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(c) adidas AG
19.06.2023

Over one million people came together to adidas’ Move For The Planet

Over 1.2 million people came together to Move For The Planet, a new global initiative by adidas that harnessed the collective activity of sporting communities across the world.

Over 173 million active minutes were tracked overall across countries in the adidas Running app with adidas pledging to donate €1 to Common Goal for every 10 minutes of activity logged across 34 sports between June 1-12 – up to €1.5m.

The contributions will support projects around the globe that educate and engage communities through sport. One such organisation selected by adidas and Common Goal is the ISF Cambodia (ISF), a charity with 16 years of experience using education and sport to change lives.

The specific project will enable the installation of solar panels to light their football fields – creating safer spaces for girls and the wider community to practice in whilst at the same time, using renewable energy.

Over 1.2 million people came together to Move For The Planet, a new global initiative by adidas that harnessed the collective activity of sporting communities across the world.

Over 173 million active minutes were tracked overall across countries in the adidas Running app with adidas pledging to donate €1 to Common Goal for every 10 minutes of activity logged across 34 sports between June 1-12 – up to €1.5m.

The contributions will support projects around the globe that educate and engage communities through sport. One such organisation selected by adidas and Common Goal is the ISF Cambodia (ISF), a charity with 16 years of experience using education and sport to change lives.

The specific project will enable the installation of solar panels to light their football fields – creating safer spaces for girls and the wider community to practice in whilst at the same time, using renewable energy.

In addition to the solar panels, together with Football for Future and Common Goal, adidas is facilitating education on environmental sustainability through sport for ISF with a focus on helping the organization to raise awareness of environmental action in the community.

This will complement ISF workshops on environmental protection, the use of single use-plastic and waste management processes, enabling the children and young adults involved to be positive role models for their community.

Move For The Planet is part of adidas’ wider sustainability initiatives as the company continues its mission to make what’s best for the athlete. Earlier this year, adidas announced that it is ahead of schedule in its journey to replace virgin polyester with recycled polyester in its products wherever possible by the end of 2024. In 2022, 96% of all the polyester adidas used was recycled.

Source:

adidas AG

Photo: Pulcra Chemicals
19.06.2023

Pulcra Chemicals and Inditex develop Dyeing Process

Pulcra Chemicals and Inditex develop Sustineri Coloring, a combined pretreatment and dyeing process for cotton and polyester/cotton resulting in water, time and energy savings. This process is the result of a joint research between Pulcra Chemicals and Inditex with the goal to mitigate the impact of standard dyeing processes and to reduce the use of natural resources.

Sustineri Coloring is based on newly engineered process chemicals which allow a one bath pretreatment and dyeing process for dark, medium and light shades of cotton and polyester/cotton fabrics by exhaust method. This results in shorter processing time and less use of water and energy.

The process is already used by selected mills and it showed that Sustineri Coloring is reducing in pretreatment and dyeing the processing time by up to 60 % and the water and energy consumption by up to 80 and 60% respectively. The state-of-the-art products allow a one bath treatment which is the key in saving resources.

Pulcra Chemicals and Inditex develop Sustineri Coloring, a combined pretreatment and dyeing process for cotton and polyester/cotton resulting in water, time and energy savings. This process is the result of a joint research between Pulcra Chemicals and Inditex with the goal to mitigate the impact of standard dyeing processes and to reduce the use of natural resources.

Sustineri Coloring is based on newly engineered process chemicals which allow a one bath pretreatment and dyeing process for dark, medium and light shades of cotton and polyester/cotton fabrics by exhaust method. This results in shorter processing time and less use of water and energy.

The process is already used by selected mills and it showed that Sustineri Coloring is reducing in pretreatment and dyeing the processing time by up to 60 % and the water and energy consumption by up to 80 and 60% respectively. The state-of-the-art products allow a one bath treatment which is the key in saving resources.

Source:

Pulcra Chemicals

(c) Messe Düsseldorf GmbH
19.06.2023

A+A Expert Talk: Focus on sustainability and the circular economy

  • The A+A Expert Talks head into their third round

On 20 June 2023 between 10.00 am and 11.30 am experts from the fields of sustainability, circular economy, environmental protection as well as corporate fashion and product management will be presenting lectures and discussing the topics of sustainability in supply chains, standardisation and quality seals as well as the associated challenges and solutions in cooperation with German Fashion. They will thereby provide a platform for the exchange of knowledge, experience and innovative approaches.

The focus on sustainability and the circular economy reflects the growing relevance of these topics in the world of work. More and more companies recognise the need to make their business practices more sustainable and optimise the use of resources.

This Expert Talk will be presented by Irina Olm, In-House Lawyer & Counsel of GermanFashion Modeverband Deutschland e.V. and Expert for Circular Economy and CSR, who will contribute her know-how on the European level.  

  • The A+A Expert Talks head into their third round

On 20 June 2023 between 10.00 am and 11.30 am experts from the fields of sustainability, circular economy, environmental protection as well as corporate fashion and product management will be presenting lectures and discussing the topics of sustainability in supply chains, standardisation and quality seals as well as the associated challenges and solutions in cooperation with German Fashion. They will thereby provide a platform for the exchange of knowledge, experience and innovative approaches.

The focus on sustainability and the circular economy reflects the growing relevance of these topics in the world of work. More and more companies recognise the need to make their business practices more sustainable and optimise the use of resources.

This Expert Talk will be presented by Irina Olm, In-House Lawyer & Counsel of GermanFashion Modeverband Deutschland e.V. and Expert for Circular Economy and CSR, who will contribute her know-how on the European level.  

Benjamin Helfritz, Head of Quality in Digital and Green Transformation, DIN – German Institute for Standardisation, will introduce participants to the new standards for the Green Transition.  
The Digital Product Passport (DPP) is needed for both the green and digital transition. However, it will only achieve its full added value if interoperability is ensured between existing and emerging systems. The use of the DPP promotes more sustainability and digital progress.

Henk Vanhoutte, Secretary General, European Safety Federation (ESF) and Lucia Mendori, Regulatory Affairs Associate / Chair ESF Working Group Sustainability will present practical examples and concrete application factors for sustainable PPE as well as solutions for sustainable jobwear. They will provide an overview of survey results from their members regarding various sustainability aspects – pointing to how the industry is treating this important topic but also flagging up the limits to the sustainability of PPE.

Lena Bay Høyland, Product Director of the Swedish workwear manufacturer Fristads Kansas will share the sustainability strategy of her company which has committed to minimise its environmental impact by targets and effective measures. The progress made by Fristads Kansas was measured using concrete figures and audits. This is a use case highlighting the innovations and challenges associated with sustainable jobwear.

By organising the Expert Talks the leading international trade fair A+A jointly with its strategic partners from the German Federal Association for Occupational Safety and Health (Basi), Fraunhofer IPA, German Fashion (Modeverband Deutschland e.V.), DGUV (Germany Statutory Accident Insurance), BAuA (Federal Agency for Occupational Safety and Health), BMAS (Ministry of Labour and Social Affairs), IVPS Interessenverbund Persönliche Schutzausrüstung e.V. (PPE Stakeholder Association) as well as IFA (Institute for Occupational Safety) will provide its community with a networking and information platform.

(c) Sappi Europe
19.06.2023

Sappi Gratkorn’s increases share of renewable energy

As part of Sappi Europe's full scale decarbonisation roadmap, Gratkorn mill is expanding the share of biomass to be used as an energy source, further driving the move away from fossil fuels as part of the mill’s contribution to the European roadmap. The project follows the recent modernisation of the power plant boiler which enabled the shift from coal to a combined approach of biomass and natural gas.

The mill is now embarking on a next step, enhancing its infrastructure and therefore capacity in order to handle the delivery, sorting and processing of increased biomass levels. This increased utilisation requires an improved biomass handling system at the mill as well as decentralised intermediate storage terminals within the surrounding regions.

"With our long-standing competent wood sourcing partner Papierholz Austria, we will continue our journey to move away from fossil fuels at Gratkorn mill and work towards a climate-neutral future”, says Peter Putz, Managing Director of Sappi Austria GmbH.

For the near term, Sappi’s decarbonisation roadmap includes close to 80 projects being carried out across its European mills by 2025.

As part of Sappi Europe's full scale decarbonisation roadmap, Gratkorn mill is expanding the share of biomass to be used as an energy source, further driving the move away from fossil fuels as part of the mill’s contribution to the European roadmap. The project follows the recent modernisation of the power plant boiler which enabled the shift from coal to a combined approach of biomass and natural gas.

The mill is now embarking on a next step, enhancing its infrastructure and therefore capacity in order to handle the delivery, sorting and processing of increased biomass levels. This increased utilisation requires an improved biomass handling system at the mill as well as decentralised intermediate storage terminals within the surrounding regions.

"With our long-standing competent wood sourcing partner Papierholz Austria, we will continue our journey to move away from fossil fuels at Gratkorn mill and work towards a climate-neutral future”, says Peter Putz, Managing Director of Sappi Austria GmbH.

For the near term, Sappi’s decarbonisation roadmap includes close to 80 projects being carried out across its European mills by 2025.

“Our 2025 roadmap identifies the path we have embarked on towards a carbon-neutral future,” explains Sarah Price, Director Sustainability of Sappi Europe. The objective is to reduce emissions of specific greenhouse gases (Scope 1 and 2) by 25 per cent and to increase the share of renewable energy in Europe to 50 per cent by 2025 (compared to 2019). Additionally, Sappi’s 2030 science-based target is to reduce carbon emissions by 41.5% per ton of product. “We’re already making good progress towards these targets, with a large number of projects already well-underway or completed”.

Source:

Sappi Europe

(c) Autoneum
16.06.2023

Autoneum: Sustainable sound absorption for underbody shields

Silence and resource efficiency are the order of the day in the development and optimization of electric vehicles. On the one hand, ever stricter emissions regulations worldwide are increasing demand for components that reduce noise pollution while helping vehicle manufacturers meet their sustainability targets. On the other hand, the absence of noise from the combustion engine in e-cars amplifies the disruptive effects of other noise sources in the passenger compartment. With Ultra-
Silent Tune, Autoneum now presents a new lightweight and environmentally friendly technology for underbody shields that reduces tire rolling noise both outside and inside the vehicle, thus improving not only acoustic performance but also driver comfort in electric cars.

Silence and resource efficiency are the order of the day in the development and optimization of electric vehicles. On the one hand, ever stricter emissions regulations worldwide are increasing demand for components that reduce noise pollution while helping vehicle manufacturers meet their sustainability targets. On the other hand, the absence of noise from the combustion engine in e-cars amplifies the disruptive effects of other noise sources in the passenger compartment. With Ultra-
Silent Tune, Autoneum now presents a new lightweight and environmentally friendly technology for underbody shields that reduces tire rolling noise both outside and inside the vehicle, thus improving not only acoustic performance but also driver comfort in electric cars.

Autoneum's Ultra-Silent Tune technology owes its sound-absorbing performance to acoustic chambers of different shapes and sizes. The chambers are created by applying an embossed polyester foil to the side of the Ultra-Silent underbody shield facing away from the noise source: they capture the sound waves emitted by the car tires, modulate them according to their respective geometry and reflect them back onto the porous carrier material. Compared to conventional single-layer underbody shields, whose acoustic performance is mainly determined by the noise-reducing properties of the product side facing the tires, Ultra-Silent Tune exploits both sides of the component, which significantly improves its acoustic absorption. Autoneum thus makes innovative use of the proven concept of traditional chamber absorbers, reducing exterior tire rolling noise.

Moreover, Ultra-Silent Tune combines optimized acoustic performance with the sustainability benefits of Autoneum's Pure technology Ultra-Silent. In addition to the high proportion of recycled PET fibers, underbody shields made from Ultra-Silent Tune can be manufactured from 100% polyester and thus be fully recycled at the end of vehicle life. Furthermore, the thickness of the multilayer construction can be flexibly adapted to the packaging spaces of different vehicle models. Underbody shields made from Autoneum's new Ultra-Silent Tune technology are already in pre-development at various vehicle manufacturers in Europe.

Source:

Autoneum Management AG

(c) ITM/TUD
Herr Philipp Weigel, Preisträger des ITMA Sustainable Innovation Award - Research & Innovation Excellence  Award, auf dem Messestand des ITM auf der ITMA 2023
16.06.2023

Philipp Weigel erhält 1. Preis des ITMA Research & Innovation Excellence Award

Im Rahmen der diesjährigen ITMA 2023, der internationalen Textilmaschinenausstellung und Plattform für die gesamte Textilmaschinenbranche, die vom 08. bis 14. Juni 2023 in Mailand stattfand, wurde Herr Dipl.-Ing. Philipp Weigel für seine am ITM angefertigte exzellente Studienarbeit "Numerische Simulation des Struktur- und Auszugverhaltensparametrisch generierter profilierter Carbonpolymergarne" mit dem ITMA Sustainable Innovation Award in der Kategrie "Research & Innovation Excellence Award" ausgezeichnet. Er erhielt hierfür den 1. Preis, der mit 10.000 EUR dotiert ist.
 
Die Arbeit ist von großem wissenschaftlichen Interesse für die Entwicklung hochleistungsfähiger, ressourcenschonender Carbonbetonbauteile mit höchster Materialeffizienz und Nachhaltigkeit sowie für die simulative Beschreibung und digitale Auslegung der Bewehrungsstruktur.

CEMATEX-Präsident Ernesto Maurer überreichte das Preisgeld und Urkunde an die glücklichen Gewinner:nnen während der ITMA 2023 in Mailand, Italien.

Der 2. und 3. Preis ging an Absolventen des Instituts für Textiltechnik der RWTH Aachen.

Im Rahmen der diesjährigen ITMA 2023, der internationalen Textilmaschinenausstellung und Plattform für die gesamte Textilmaschinenbranche, die vom 08. bis 14. Juni 2023 in Mailand stattfand, wurde Herr Dipl.-Ing. Philipp Weigel für seine am ITM angefertigte exzellente Studienarbeit "Numerische Simulation des Struktur- und Auszugverhaltensparametrisch generierter profilierter Carbonpolymergarne" mit dem ITMA Sustainable Innovation Award in der Kategrie "Research & Innovation Excellence Award" ausgezeichnet. Er erhielt hierfür den 1. Preis, der mit 10.000 EUR dotiert ist.
 
Die Arbeit ist von großem wissenschaftlichen Interesse für die Entwicklung hochleistungsfähiger, ressourcenschonender Carbonbetonbauteile mit höchster Materialeffizienz und Nachhaltigkeit sowie für die simulative Beschreibung und digitale Auslegung der Bewehrungsstruktur.

CEMATEX-Präsident Ernesto Maurer überreichte das Preisgeld und Urkunde an die glücklichen Gewinner:nnen während der ITMA 2023 in Mailand, Italien.

Der 2. und 3. Preis ging an Absolventen des Instituts für Textiltechnik der RWTH Aachen.

Der ITMA Sustainable Innovation Award wurde von CEMATEX ins Leben gerufen, um die gemeinsamen Anstrengungen der globalen Textilindustrie zur Förderung der Nachhaltigkeit von Unternehmen durch innovative Lösungen und zur Förderung herausragender branchenspezifischer Forschung zu würdigen.
Der Preis umfasst zwei Kategorien: einen Industry Excellence Award für Textil- und Bekleidungshersteller und einen Research & Innovation Excellence Award, der für Master-Studenten offen ist.

Source:

Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) - TU Dresden

(c) HUGO BOSS
14.06.2023

HeiQ launches new BOSS x HeiQ AeoniQ™ Polo Shirt

HeiQ announces the next launch of the previously ISPO-awarded BOSS x HeiQ AeoniQ™ polo shirt during the BOSS OPEN tennis tournament in Stuttgart.

The BOSS x HeiQ AeoniQ™ polo shirt is crafted from 87% HeiQ AeoniQ™, a cellulosic yarn derived from certified wood pulp with performance attributes rivaling polyester fabrics’. This seamless garment, manufactured in Europe and born from a collaboration between HUGO BOSS and Swiss innovator HeiQ, is as disruptive as its cellulosic fibers. The polo shirt is available for purchase in the BOSS OPEN pop-up store, as well as online.

The first BOSS x HeiQ AeoniQ™ polo shirt has just been acknowledged with the ISPO AWARD 2023, setting new standards in the field of more sustainable performance apparel.

HeiQ announces the next launch of the previously ISPO-awarded BOSS x HeiQ AeoniQ™ polo shirt during the BOSS OPEN tennis tournament in Stuttgart.

The BOSS x HeiQ AeoniQ™ polo shirt is crafted from 87% HeiQ AeoniQ™, a cellulosic yarn derived from certified wood pulp with performance attributes rivaling polyester fabrics’. This seamless garment, manufactured in Europe and born from a collaboration between HUGO BOSS and Swiss innovator HeiQ, is as disruptive as its cellulosic fibers. The polo shirt is available for purchase in the BOSS OPEN pop-up store, as well as online.

The first BOSS x HeiQ AeoniQ™ polo shirt has just been acknowledged with the ISPO AWARD 2023, setting new standards in the field of more sustainable performance apparel.

More information:
HeiQ Hugo Boss Shirt Ispo Award
Source:

HeiQ

12.06.2023

Circular Polymers by Ascend launches Cerene™

Nylon 6, nylon 6,6, polypropylene, PET and calcium carbonate are available through the company’s proprietary carpet recycling process

Circular Polymers by Ascend, a market-leading recycler of post-consumer carpet, today the launch of Cerene™, a line of recycled polymers and materials made from the company’s proprietary carpet reclaiming technology. Cerene is available as polyamide 6 and 66, PET, polypropylene and calcium carbonate as a consistent,
sustainable feedstock for many applications, including molding and compounding.
Recycling experts from Circular Polymers will be showcasing Cerene at Compounding World Expo on June 14-15 at the Messe Essen in Germany.

Ascend Performance Materials, a fully integrated producer of durable high-performance materials and the majority owner of Circular Polymers by Ascend, is known for its innovations in nylon 6,6. Cerene will continue that legacy with offerings in nylon 6,6 while also bringing to market recycled polymers such as nylon 6, PET and PP.

Nylon 6, nylon 6,6, polypropylene, PET and calcium carbonate are available through the company’s proprietary carpet recycling process

Circular Polymers by Ascend, a market-leading recycler of post-consumer carpet, today the launch of Cerene™, a line of recycled polymers and materials made from the company’s proprietary carpet reclaiming technology. Cerene is available as polyamide 6 and 66, PET, polypropylene and calcium carbonate as a consistent,
sustainable feedstock for many applications, including molding and compounding.
Recycling experts from Circular Polymers will be showcasing Cerene at Compounding World Expo on June 14-15 at the Messe Essen in Germany.

Ascend Performance Materials, a fully integrated producer of durable high-performance materials and the majority owner of Circular Polymers by Ascend, is known for its innovations in nylon 6,6. Cerene will continue that legacy with offerings in nylon 6,6 while also bringing to market recycled polymers such as nylon 6, PET and PP.

“Customers around the globe are seeking consistent and reliable post-consumer recycled materials,” said Maria Field, business director of Circular Polymers by Ascend. “Cerene is mechanically recycled using a process that minimizes our carbon footprint and environmental impact.”

Circular Polymers by Ascend converts post-consumer carpet into fiber and pellets. The company uses a proprietary process in its California-based facilities to achieve high efficiency in recycling, successfully providing a new life for virtually every component of the carpet and backing. The company has redirected 85 million pounds of carpet from landfills into new goods since 2018.

Source:

Circular Polymers by Ascend

09.06.2023

Archroma and COLOURizd™ collaborate to make fashion more sustainable

Archroma, a leader in specialty chemicals towards sustainable solutions, is teaming up with COLOURizd™, an innovator specializing in sustainable textile dyeing technologies, to set a new standard for the eco-friendlier production of sustainable textiles.

The new collaboration will enable fabric mills and brands to combine Archroma pigment coloration solutions with the COLOURizd™ QuantumCOLOUR™ yarn-coloring technology to produce high-quality, high-performance textiles with maximum consumer appeal and minimal environmental impact.

Conventional fiber-reactive methods of dyeing cellulosic and synthetic yarns are multi-step resource-intensive processes that use up to 95 liters of water per kilograms of colored yarn and discharge approximately 94 liters of effluent.

Archroma, a leader in specialty chemicals towards sustainable solutions, is teaming up with COLOURizd™, an innovator specializing in sustainable textile dyeing technologies, to set a new standard for the eco-friendlier production of sustainable textiles.

The new collaboration will enable fabric mills and brands to combine Archroma pigment coloration solutions with the COLOURizd™ QuantumCOLOUR™ yarn-coloring technology to produce high-quality, high-performance textiles with maximum consumer appeal and minimal environmental impact.

Conventional fiber-reactive methods of dyeing cellulosic and synthetic yarns are multi-step resource-intensive processes that use up to 95 liters of water per kilograms of colored yarn and discharge approximately 94 liters of effluent.

In contrast, the innovative QuantumCOLOUR™ process injects pigment and a binder directly into the yarn, using only 0.95 liters of water per kilograms of colored yarn while producing zero effluent. This represents an unprecedented reduction of 98% in water consumption alongside zero wastewater discharge, zero discharge of harmful chemicals, 73% decrease in carbon footprint and 50% reduction in energy use.*

With Archroma, textile manufacturers and apparel brands can add further value to the QuantumCOLOUR™ process with tailor-made system solutions, including JUST COLOR. This formaldehyde-free** pigment coloration system is based on Archroma’s revolutionary Printofix® pigment dispersions and Helizarin® binders to deliver exceptionally soft fabrics with high fastness and durability, while also enabling energy and chemical savings and higher productivity.

* As tested by Peterson Control Union
** Below limits of detection according to industry standard test methods

Source:

Archroma

(c) TfS
07.06.2023

SCTI™ and TfS collaborate to accelerate sustainability journey

Sustainable Chemistry for the Textile Industry (SCTI™) and Together for Sustainability (TfS) are teaming up to support and accelerate the leather and textile industry's sustainability journey through sustainable chemistry. Together they will collaborate in driving convergence in standards and methodologies and inspire industry action for a better future.

SCTI is an alliance of leading chemical companies that strives to empower the textile and leather industries to apply sustainable, state-of-the-art chemistry solutions that protect factory workers, local communities, consumers and the environment.

TfS is a member-driven initiative, raising Corporate Social Responsibility (CSR) standards throughout the chemical industry. TfS members are chemical companies committed to making sustainability improvements within their own – and their suppliers’ – operations. TfS has also launched a comprehensive program to foster defossilization of chemical value chains, providing standardization tools to enable effective Scope 3 management based on primary data and launching the TfS Guideline to determine Product Carbon Footprint (PCF).

Sustainable Chemistry for the Textile Industry (SCTI™) and Together for Sustainability (TfS) are teaming up to support and accelerate the leather and textile industry's sustainability journey through sustainable chemistry. Together they will collaborate in driving convergence in standards and methodologies and inspire industry action for a better future.

SCTI is an alliance of leading chemical companies that strives to empower the textile and leather industries to apply sustainable, state-of-the-art chemistry solutions that protect factory workers, local communities, consumers and the environment.

TfS is a member-driven initiative, raising Corporate Social Responsibility (CSR) standards throughout the chemical industry. TfS members are chemical companies committed to making sustainability improvements within their own – and their suppliers’ – operations. TfS has also launched a comprehensive program to foster defossilization of chemical value chains, providing standardization tools to enable effective Scope 3 management based on primary data and launching the TfS Guideline to determine Product Carbon Footprint (PCF).

Both TfS and SCTI share the mission to drive transformational change, and intend to collaborate on advancing the industry’s sustainability goals, leveraging the TfS Scope 3 greenhouse gas emissions (GHG) program.

Source:

Sustainable Chemistry for the Textile Industry (SCTI™) / Together for Sustainability (TfS)

© Fraunhofer UMSICHT
Im Projekt Power2C4 haben die Forschenden u.a. ein neues Katalysatorsystem auf Basis eines synthetischen Saponiten identifiziert und anschließend synthetisiert.
06.06.2023

Nachhaltigere und emissionsärmere Syntheseroute für Polymere

Butadien ist eine wichtige Plattformchemikalie, um Polymere – u.a. für die Produktion von Autoreifen – herzustellen. Bislang wird das Monomer aber meist auf Basis von Erdöl gewonnen. Eine alternative Syntheseroute haben Forschende des Fraunhofer UMSICHT im Rahmen des Projektes Power2C4 untersucht. Im Fokus: ein katalytisches Verfahren unter Einsatz regenerativ erzeugten Stroms.

»Butadien spielt eine wichtige Rolle bei der Herstellung von Polymeren«, ordnet UMSICHT-Wissenschaftler Marc Greuel ein. Neben Polybutadien, das in Autoreifen Anwendung findet, können Polytetrahydrofuran (PTHF), Polybutylenterephtalat (PBT) und Polybutylensuccinat (PBS) aus dem Monomer erzeugt werden. »Der Haken: Aktuell wird Butadien zu 95 Prozent als Nebenprodukt beim thermischen Zersetzen von Rohbenzin zu Ethen gewonnen – unter Ausstoß von Kohlendioxid. Zudem werden die Preise für Butadien perspektivisch ansteigen, da sich die Rohstoffbasis für Ethen immer mehr in Richtung Schiefergas verschiebt und dadurch die Produktionskapazität für Butadien sinkt.« Das Interesse an einem alternativen Herstellungsprozess ist also nicht nur aus Klimaschutzgründen groß.

Butadien ist eine wichtige Plattformchemikalie, um Polymere – u.a. für die Produktion von Autoreifen – herzustellen. Bislang wird das Monomer aber meist auf Basis von Erdöl gewonnen. Eine alternative Syntheseroute haben Forschende des Fraunhofer UMSICHT im Rahmen des Projektes Power2C4 untersucht. Im Fokus: ein katalytisches Verfahren unter Einsatz regenerativ erzeugten Stroms.

»Butadien spielt eine wichtige Rolle bei der Herstellung von Polymeren«, ordnet UMSICHT-Wissenschaftler Marc Greuel ein. Neben Polybutadien, das in Autoreifen Anwendung findet, können Polytetrahydrofuran (PTHF), Polybutylenterephtalat (PBT) und Polybutylensuccinat (PBS) aus dem Monomer erzeugt werden. »Der Haken: Aktuell wird Butadien zu 95 Prozent als Nebenprodukt beim thermischen Zersetzen von Rohbenzin zu Ethen gewonnen – unter Ausstoß von Kohlendioxid. Zudem werden die Preise für Butadien perspektivisch ansteigen, da sich die Rohstoffbasis für Ethen immer mehr in Richtung Schiefergas verschiebt und dadurch die Produktionskapazität für Butadien sinkt.« Das Interesse an einem alternativen Herstellungsprozess ist also nicht nur aus Klimaschutzgründen groß.

Die Frage, wie eine nachhaltigere, emissionsärmere und auch günstige Syntheseroute aussehen kann, stand im Zentrum des Projektes Power2C4. Angesiedelt im Kompetenzzentrum »Virtuelles Institut – Strom zu Gas und Wärme« hat es Expertinnen und Experten des Fraunhofer UMSICHT, des Gas- und Wärme-Instituts Essen e.V., des Energiewirtschaftlichen Instituts an der Universität zu Köln, des Forschungszentrums Jülich, der Ruhr-Universität Bochum, des Wuppertal-Instituts und des ZBT Duisburg zusammengeführt. Ihre Zielsetzung: Flexibilitätsoptionen vor dem Hintergrund der Energiewende zu untersuchen. Im Fokus des Teilprojekts Power2C4 stand ein neues katalytisches Herstellungsverfahren unter Einsatz regenerativ erzeugten Stroms. Ausgangspunkt ist Ethanol, das zum Beispiel im Zuge einer Hydrierungsreaktion aus CO2 und elektrolytisch erzeugtem Wasserstoff gewonnen wird. Dieses Ethanol dient in einem zweiten Schritt zur Synthese von Butadien mittels des sogenannten Lebedev-Prozesses.

Vielversprechendes Katalysatorsystem identifiziert
Da der erste Schritt bereits Gegenstand zahlreicher Forschungsaktivitäten ist, konzentrierten sich Wissenschaftlerinnen und Wissenschaftler auf die Weiterveredlung des Ethanols zu Butadien und die Verfahrenskopplung beider Schritte. »Wir haben u.a. ein neues Katalysatorsystem auf Basis eines synthetischen Saponiten identifiziert und anschließend synthetisiert«, erklärt Dr. Barbara Zeidler-Fandrich vom Fraunhofer UMSICHT. Die Testung der katalytischen Aktivität erfolgte in einer eigens konstruierten Versuchsanlage. »Aufbauend auf einem ersten Screening haben wir aussichtsreiche Materialien weiter optimiert. Das Ergebnis: Verglichen mit dem unmodifizierten Ausgangsmaterial lässt sich die Butadien-Selektivität im Rahmen der Katalysatoroptimierung deutlich erhöhen. Allerdings ist auch klar geworden, dass noch weiteres Potenzial zur Verbesserung der Katalysatorperformance besteht.«

Nachhaltigkeitsbewertung des Power-to-Butadien-Prozesses
Wie nachhaltig dieser Power-to-Butadien-Prozess wirklich ist, haben Dr. Markus Hiebel und Dr. Daniel Maga vom Fraunhofer UMSICHT in einer Life Cycle Analysis (LCA) untersucht. Beleuchtet haben sie dabei – neben unterschiedlichen Katalysatoren – die Herstellungsmethode von Ethanol und die Relevanz der eingesetzte Energiequelle. »Wir konnten zeigen, dass der Lebedev-Prozess je nach verwendeter Ethanol- und Energiequelle das Potenzial hat, Butadien und damit auch Styrol-Butadien-Kautschuk aus biobasiertem Ethanol oder CO2-basiertem Ethanol herzustellen und CO2-Emissionen zu reduzieren«, so Daniel Maga. »Damit ermöglicht der Power2C4-Prozess die Nutzung alternativer Kohlenstoffquellen.« Besonders die Nutzung von Ethanol aus Restbiomasseströmen wie Bagasse oder Stroh eröffne Wege, Treibhausgasemissionen von Butadien deutlich zu reduzieren. Zudem führe ein Strommix mit immer höheren Anteilen an erneuerbaren Energien zur Möglichkeit, Treibhausgasreduktionen über Carbon-Capture-and-Utilization-Prozesse (CCU) zu realisieren.
 
FÖRDERHINWEIS
Das Kompetenzzentrum »Virtuelles Institut – Strom zu Gas und Wärme« wird gefördert durch das »Operationelle Programm zur Förderung von Investitionen in Wachstum und Beschäftigung für Nordrhein-Westfalen aus dem Europäischen Fonds für regionale Entwicklung« (OP EFRE NRW) sowie durch das Ministerium für Wirtschaft, Innovation, Digitalisierung und Energie des Landes Nordrhein-Westfalen.

06.06.2023

GOTS, European Space Agency and Marple: Remote monitoring in organic cotton certification

  • Project from the Global Organic Textile Standard, European Space Agency and Marple will use AI and satellite imagery to detect organic versus non-organic cotton fields
  • Innovative demonstrator project explores the potential of remote monitoring to strengthen integrity and development of organic cotton cultivation
  • Project will run across India with first results expected by the end of 2023

In a world first, the Global Organic Textile Standard (GOTS), European Space Agency (ESA) and AI company Marple have today launched a new demonstrator project that aims to show the potential for remote satellite monitoring of organic cotton cultivation systems.

The project, to be carried out under ESA’s Business Applications and Space Solutions (BASS) programme, will train artificial intelligence (AI) to use ESA satellite data to detect cotton fields across India and automatically classify them according to their cultivation standard. By integrating standardised yield metrics, this innovative approach will also enable GOTS to generate realistic estimates of organic cotton yields in specific areas.

  • Project from the Global Organic Textile Standard, European Space Agency and Marple will use AI and satellite imagery to detect organic versus non-organic cotton fields
  • Innovative demonstrator project explores the potential of remote monitoring to strengthen integrity and development of organic cotton cultivation
  • Project will run across India with first results expected by the end of 2023

In a world first, the Global Organic Textile Standard (GOTS), European Space Agency (ESA) and AI company Marple have today launched a new demonstrator project that aims to show the potential for remote satellite monitoring of organic cotton cultivation systems.

The project, to be carried out under ESA’s Business Applications and Space Solutions (BASS) programme, will train artificial intelligence (AI) to use ESA satellite data to detect cotton fields across India and automatically classify them according to their cultivation standard. By integrating standardised yield metrics, this innovative approach will also enable GOTS to generate realistic estimates of organic cotton yields in specific areas.

Integrated with existing GOTS measures, this project will enable GOTS to further enhance the integrity of organic cotton by developing advanced risk assessment technology for organic certification and preventing fraud from the beginning of the supply chain. “It is an honour and very exciting to be a partner in this ESA Demonstration Project, and it is living up to our claim to be pioneers serving the sustainable textile sector to enable continuous improvement. Technologies like this will be a game changer regarding the integrity and promotion opportunities of organic cotton.” says Claudia Kersten, Managing Director of GOTS.

The project's anticipated impact extends beyond identifying certified organic cotton fields. It is expected to also empower GOTS to recognise cotton fields that have not yet obtained organic certification but possess the potential for a seamless transition to organic cultivation, thanks to their utilisation of traditional and ecologically friendly farming practices. This would enable GOTS to bring a greater number of farmers – particularly those of a smaller size – into the certified organic sector and supply chains, creating new economic opportunities for small-scale farmers and their communities while also helping the textile sector to meet growing consumer demand for organic cotton. Guillaume Prigent, Business Development and Partnerships Officer at the European Space Agency, adds: “This project highlights how space solutions can have a positive impact on the world and is the kind of innovation that ESA supports through its Business Applications and Space Solutions programme.”

The project will run across the distinct cotton growing regions in India, with first results expected by the end of 2023.

India project builds on successful Uzbekistan feasibility pilot
The project is co-financed by GOTS and ESA, in collaboration with Marple GmbH, a German software development firm that developed the CoCuRA (Cotton Cultivation Remote Assessment) software with ESA BASS and successfully piloted it in a feasibility project in 2021 in Uzbekistan.

That venture showed how the trained AI was able to accurately differentiate cotton fields from other crops using only satellite images and sensor data, as well as whether the cotton fields were cultivated organically.

This spurred considerable interest from GOTS, which has committed to the development of cutting-edge technologies that can improve the integrity of the organic textile sector, especially cotton. Dr David Scherf, co-founder of Marple, said: “All our projects strive to leverage advanced technology for a positive impact on the environment and society. We are therefore delighted that our CoCuRA technology, which emerged from a moonshot research project, is being applied in a practical and impactful way. We are excited about the opportunity to work with the exceptional team at GOTS and further strengthen our successful partnership with ESA.”

More information:
GOTS AI cotton India
Source:

GOTS Global Organic Textile Standard

05.06.2023

Resource-efficient dyeing solutions for sustainable PA fibers

CHT and Fulgar have collaborated to support the goal of reducing the carbon footprint with an effective and sustainable solution for the textile market.

Combining FULGAR’s circular economy ready yarns with CHT’s resource-saving dyeing techniques significantly reduces the usage of natural resources and leads to lower environmental impact and ultimately a lower carbon footprint. The combined process needs less water, uses less energy, and saves time while meeting the color fastness standards for finished textile products.

The combination of 100 % biobased polyamide EVO® by FULGAR yarns with CHT sustainable dyeing application can save water up to 64 %, energy use up to 50 % and process time up to 50 %, when compared to standard dyeing processes. Sustainable dyeing of EVO® is promoted using CHT’s soy-based dyeing auxiliary SARABID TS 300. SARABID TS 300 has accredited a C2C Certified Material Health Certificate at Gold level and USDA Certified Biobased Product Certification.

CHT and Fulgar have collaborated to support the goal of reducing the carbon footprint with an effective and sustainable solution for the textile market.

Combining FULGAR’s circular economy ready yarns with CHT’s resource-saving dyeing techniques significantly reduces the usage of natural resources and leads to lower environmental impact and ultimately a lower carbon footprint. The combined process needs less water, uses less energy, and saves time while meeting the color fastness standards for finished textile products.

The combination of 100 % biobased polyamide EVO® by FULGAR yarns with CHT sustainable dyeing application can save water up to 64 %, energy use up to 50 % and process time up to 50 %, when compared to standard dyeing processes. Sustainable dyeing of EVO® is promoted using CHT’s soy-based dyeing auxiliary SARABID TS 300. SARABID TS 300 has accredited a C2C Certified Material Health Certificate at Gold level and USDA Certified Biobased Product Certification.

EVO® by FULGAR, the totally renewable yarn based on castor plants, does not require high amounts of water - 4 times less compared to cotton. In addition to the sustainable aspect, EVO® by FULGAR offers characteristics like lower fiber weight, particular moisture management and higher stretch often without the need for elastomer fiber. This helps to avoid material mixes for better recycling opportunities. EVO® provides greater user comfort, mainly for performance and casual apparel.

More information:
CHT Evo by Fulgar Fulgar
Source:

CHT Germany GmbH

02.06.2023

Carbios receives funding for PET biorecycling plant and R&D activities

Carbios will receive grants totaling €54 million from French State via France 2030 and Grand-Est Region to finance construction of world’s first PET biorecycling plant and accelerate R&D activities

Carbios announces that its project has been selected by the French State for funding of €30 million from the French State as part of the investment plan France 2030, and €12.5 million from the Grand-Est Region.  The implementation of this funding is conditional to the European Commission’s approval of the corresponding state aid scheme, followed by the conclusion of national aid agreements. As part of the national call for projects on “Plastics Recycling” operated by ADEME[1], Carbios’ project to finalize the industrialization of its unique PET biorecycling process has been selected. The reference plant in Longlaville in the Grand-Est region will be the world’s first PET biorecycling plant and is due for commissioning in 2025. This plant will make it possible to relocate to France the production of the two basic components of PET, PTA and MEG[2], both derived from the Carbios process.

Carbios will receive grants totaling €54 million from French State via France 2030 and Grand-Est Region to finance construction of world’s first PET biorecycling plant and accelerate R&D activities

Carbios announces that its project has been selected by the French State for funding of €30 million from the French State as part of the investment plan France 2030, and €12.5 million from the Grand-Est Region.  The implementation of this funding is conditional to the European Commission’s approval of the corresponding state aid scheme, followed by the conclusion of national aid agreements. As part of the national call for projects on “Plastics Recycling” operated by ADEME[1], Carbios’ project to finalize the industrialization of its unique PET biorecycling process has been selected. The reference plant in Longlaville in the Grand-Est region will be the world’s first PET biorecycling plant and is due for commissioning in 2025. This plant will make it possible to relocate to France the production of the two basic components of PET, PTA and MEG[2], both derived from the Carbios process.

Carbios also announces that it has been granted total funding of €11.4 million from the French State as part of France 2030, of which €8.2 million directly for Carbios (€5 million in repayable advances) and €3.2 million for its academic partners INRAE[3], INSA[4] and CNRS[5] via the TWB[6] and TBI[7] joint service and research units. This funding will enable to continue its research into the optimization and continuous improvement of Carbios’ enzymatic technologies.

The plant will secure the sales of the first volumes of recycled PET produced with Carbios’ technology, and to offer its partners recycled PET of the same quality as virgin PET. Once the necessary permits have been obtained, which should be granted by the end of 2023, in line with the announced start of construction before the end of the year, the plant is scheduled to be commissioned in 2025. This will be followed by a period of ramp-up to full capacity. The plant will have a nominal processing capacity of 50,000 tonnes of PET waste per year, equivalent to 2 billion bottles or 2.5 billion food trays.

Selection for funding by the French State through France 2030 and the Grand-Est Region complements the recent announcement of an exclusive, long-term partnership with Novozymes[8], a leader in enzyme production, one of the main aims is to ensure the supply of enzymes to Carbios’ Longlaville plant and future licensed plants. In addition, Carbios recently secured a first supply source for its future plant by winning part of the CITEO tender for the biorecycling of multilayer trays[9].


[1] The French Agency for Ecological Transition
[2] PTA = purified terephthalic acid; MEG = monoethylene glycol
[3] French National Research Institute for Agriculture, Food and the Environment
[4] French National Institute of Applied Sciences
[5] French National Center for Scientific Research
[6] Toulouse White Biotechnology – UMS INRAE 1337 / UAR CNRS 3582
[7] Toulouse Biotechnology Institute – UMR INSA/CNRS 5504 / UMR INSA/INRAE 792
[8] Cf. press release dated 12 January 2023
[9] Cf. press release published by Citeo dated 26 April 2023

More information:
Carbios biorecycling plastics France
Source:

Carbios

Foto: Globetrotter/Niklas Voeckler
02.06.2023

Globetrotter stellt „Re:Think Store“ auf der Outdoor by ISPO vor

Mit seinem ersten Re:Think Store in Bonn hat der Hamburger Outdoor-Ausrüster Globetrotter vor kurzem ein zukunftsweisendes Vorreiterprojekt für den Retail an den Start gebracht. Ab dem Wochenende (04. bis 06. Juni 2023) präsentiert das Unternehmen sein Konzept auf dem Sustainability Hub der Fachmesse Outdoor by ISPO.

Auf mehreren Ausstellungstafeln informiert Globetrotter die Besucherinnen und Besucher des Sustainability Hub über das Re:Think-Konzept. Über einen QR-Code können weiterführende, multimedial aufbereitete Informationen über das Projekt abgerufen werden. Im Rahmen einer Führung durch den Hub stellt CSR-Manager Fabian Nendza das Store-Konzept am Montag, den 5. Juni, persönlich vor und ist als Ansprechpartner vor Ort.

Mit seinem ersten Re:Think Store in Bonn hat der Hamburger Outdoor-Ausrüster Globetrotter vor kurzem ein zukunftsweisendes Vorreiterprojekt für den Retail an den Start gebracht. Ab dem Wochenende (04. bis 06. Juni 2023) präsentiert das Unternehmen sein Konzept auf dem Sustainability Hub der Fachmesse Outdoor by ISPO.

Auf mehreren Ausstellungstafeln informiert Globetrotter die Besucherinnen und Besucher des Sustainability Hub über das Re:Think-Konzept. Über einen QR-Code können weiterführende, multimedial aufbereitete Informationen über das Projekt abgerufen werden. Im Rahmen einer Führung durch den Hub stellt CSR-Manager Fabian Nendza das Store-Konzept am Montag, den 5. Juni, persönlich vor und ist als Ansprechpartner vor Ort.

Das Besondere am Re:Think-Konzept: Bei der Einrichtung des neuen Stores wurden fast ausschließlich bereits vorhandene, gebrauchte Materialien verwendet. Von den Regalen über die Vorhänge der Umkleidekabinen bis hin zur Teststrecke für Wanderschuhe und den Schrott-Bären im Eingangsbereich: Das gesamte Inventar des Vormieters Conrad Electronic sowie weitere, gebrauchte Einrichtungsgegenstände und Materialien aus dem Globetrotter-Lagerbestand wurden kreativ weiterverwendet – und damit große Mengen CO2 und Material eingespart. Wie viel genau, das lässt Globetrotter aktuell wissenschaftlich durch die Expertinnen und Experten von EPEA untersuchen. Die Ergebnisse werden in den kommenden Monaten erwartet.

Source:

Globetrotter Ausrüstung GmbH

(c) TNO/Fraunhofer UMSICHT
02.06.2023

Fraunhofer: New guide to the future of plastics

How does a future-proof, circular and sustainable plastics economy look like? The answer is a balance ranging from plastics reduction to a sustainable use of recyclable plastics. After all, the increasing demand for plastics in high-value applications such as food packaging, car parts or synthetic textiles requires a holistic change. With four strategic approaches, researchers from the German institute Fraunhofer UMSICHT and the Dutch institute TNO now provide insights into how this future scenario could look like in their recently published white paper "From #plasticfree to future-proof plastics". Both organizations also start a hands-on platform for plastics in a circular economy: European Circular Plastics Platform – CPP aimed at removing existing barriers and sharing of promising solutions.

How does a future-proof, circular and sustainable plastics economy look like? The answer is a balance ranging from plastics reduction to a sustainable use of recyclable plastics. After all, the increasing demand for plastics in high-value applications such as food packaging, car parts or synthetic textiles requires a holistic change. With four strategic approaches, researchers from the German institute Fraunhofer UMSICHT and the Dutch institute TNO now provide insights into how this future scenario could look like in their recently published white paper "From #plasticfree to future-proof plastics". Both organizations also start a hands-on platform for plastics in a circular economy: European Circular Plastics Platform – CPP aimed at removing existing barriers and sharing of promising solutions.

Versatile and inexpensive materials with low weight and very good barrier properties: That's what plastics are. In addition to their practical benefits, however, the materials are also associated with a significant share of mankind's greenhouse gas emissions. The production and use of plastics cause environmental pollution and microplastics, deplete fossil resources and lead to import dependencies. At the same time, alternatives - such as glass packaging - could cause even more environmental burden or have poorer product properties.

Researchers from TNO and Fraunhofer UMSICHT have elaborated a white paper that provides a basis for the transformation of plastics production and use. They consider the integration of the perspectives of all stakeholders and their values and the potential of current and future technologies. In addition, the functional properties of the target product, the comparison with alternative products without plastics, and their impact in a variety of environmental, social and economic categories over the entire life cycle are crucial. In this way, a systematic assessment and ultimately a systematic decision as to where we can use, reject or replace plastics can be realized.

Strategies for the Circular Economy
As a result, the researchers describe four strategic approaches for transforming today's largely linear plastics economy into a fully circular future: Narrowing the Loop, Operating the Loop, Slowing the Loop, and Closing the Loop. By Narrowing the Loop, the researchers recommend, as a first step, to reduce the amount of materials mobilized in a circular economy. Operating the Loop refers to using renewable energy, minimizing material losses, and sourcing raw materials sustainably. For Slowing the Loop, measures are needed to extend the useful lifetime of materials and products. Finally, for Closing the Loop, plastics must be collected, sorted and recycled to high standards.

Individual strategies fall under each of the four approaches. While the ones under Operating the Loop (O strategies) should be applied in parallel and as completely as possible. According to the researchers, the decision for the strategies in the other fields (R strategies) requires a complex process: “Usually, more than one R-strategy can be considered for a given product or service. These must be carefully compared in terms of their feasibility and impact in the context of the status quo and expected changes”, explains Jürgen Bertling from Fraunhofer UMSICHT. The project partners have therefore developed a guiding principle for prioritization based on the idea of the waste hierarchy.

A holistic change, as we envision it, can only succeed if science, industry, politics and citizens work together across sectors. “This implies several, partly quite drastic changes at 4 levels: legislation and policy, circular chain collaboration, design and development, and education and information. For instance, innovations in design and development include redesign of polymers to more oxygen rich ones based on biomass and CO2 utilisation. Current recycling technologies have to be improved for high quantity and quality recycling,” explains Jan Harm Urbanus from TNO.

Hands-on platform for cross-sector collaboration
“Therefore, in a next step, TNO and Fraunhofer UMSICHT are building a hands-on platform for plastics in a circular economy: European Circular Plastics Platform – CPP," explains Esther van den Beuken, Principal Consultant from TNO. It will give companies, associations and non-governmental organizations the opportunity to work together on existing barriers and promising solutions for a Circular Plastics Economy. The platform will also offer its members regular hands-on workshops on plastics topics, roundtable discussions on current issues, and participation in multi-client studies on pressing technical challenges. Regular meetings will be held in the cross-border region of Germany and the Netherlands as well as online. The goal is to bring change to the public and industry.

Source:

Fraunhofer UMSICHT

(c) KARL MAYER GROUP
02.06.2023

KARL MAYER GROUP with sustainable technical textiles at ITMA

KARL MAYER GROUP will be presenting a WEFTTRONIC® II G at the ITMA with new features and upgrades for greater efficiency. This warp knitting machine with weft insertion produces lattice structures from high-strength polyester, which are firmly established in the construction industry in particular. With a working width of 213", it offers productivity and further advantages through design innovations. New features include weft thread tension monitoring, management and the new VARIO WEFT laying system. The component for the weft insertion aims at maximum flexibility. It allows the patterning of the weft yarn to be changed quickly and easily electronically, without mechanical intervention during yarn insertion and without limits on repeat lengths. In addition, there is less waste.

KARL MAYER GROUP will be presenting a WEFTTRONIC® II G at the ITMA with new features and upgrades for greater efficiency. This warp knitting machine with weft insertion produces lattice structures from high-strength polyester, which are firmly established in the construction industry in particular. With a working width of 213", it offers productivity and further advantages through design innovations. New features include weft thread tension monitoring, management and the new VARIO WEFT laying system. The component for the weft insertion aims at maximum flexibility. It allows the patterning of the weft yarn to be changed quickly and easily electronically, without mechanical intervention during yarn insertion and without limits on repeat lengths. In addition, there is less waste.

The KARL MAYER GROUP also supports its customers with well thought-out Care Solutions. The new support offers include retrofit packages for retrofitting control and drive technology for weft insertion and composite machines, and service packages that bundle various services. These include machine inspections and the replacement of all drive belts. The customer benefits from fixed prices that cover the costs of technician assignments, various discount options and transparent services.

A new solution for the vertical greening of cities is presented from the field of application for technical textiles. The core of the innovation is a grid textile produced on warp knitting machines with weft insertion by KARL MAYER Technische Textilien GmbH. The knitted lattice fabric is made of flax. It is used as a climbing aid for fast-growing plants, and after the greening phase, in autumn, it can be recycled together with these plants as biomass in pyrolysis plants to produce electricity and activated carbon. In summer, the planted sails lower the ambient temperature through evaporation effects. In addition, photosynthesis creates fresh air and binds CO2. Other important advantages are low soil requirements and flexible placement in public spaces. The greening system was developed by the company Micro Climate Cultivation, OMC°C, with the support of KARL MAYER Technische Textilien.

The KARL MAYER GROUP will also be exhibiting a sustainable composite solution made from natural fibres. The reinforcing textile of the innovative lightweight material is a multiaxial non-crimp fabric, which was also produced from the bio-based raw material flax on a COP MAX 4 from KARL MAYER Technische Textilien. The boatbuilding specialist GREENBOATS uses natural fibre composites to achieve sustainable products. The fact that it succeeds in this is shown, for example, by the Global Warming Potential (GWP): 0.48 kg of CO2 per kilogram of flax reinforcement compares with 2.9 kg of CO2 per kilogram of glass textile.

Source:

KARL MAYER Verwaltungsgesellschaft mbH

02.06.2023

HeiQ at ITMA 2023

HeiQ will display its biobased textile solutions for allergen reduction, odor control, and dynamic cooling at ITMA Milano 2023. The event will take place from the 8th to the 14th of June at Fiera Milano in Italy, where HeiQ will also showcase HeiQ AeoniQ™, its cellulosic fiber and flagship advancement in biobased textile technologies.

The focal point of the HeiQ exhibition at ITMA Milano 2023 will be the company’s biobased textile technologies. These innovations address one of the major challenges faced by the textile industry, making fabrics more functional while contributing to a sustainable future.

The ready-to-use HeiQ technologies on display are HeiQ Allergen* Tech, providing synbiotic protection in home textiles and unmatched defense against inanimate allergens, HeiQ Cool, the dual-action cooling that keeps one cool and comfortable, even in the most demanding conditions, HeiQ Mint, the botanical odor control that provides plant-based and effective odor management, and HeiQ Fresh, for sustainable odor control.

HeiQ will display its biobased textile solutions for allergen reduction, odor control, and dynamic cooling at ITMA Milano 2023. The event will take place from the 8th to the 14th of June at Fiera Milano in Italy, where HeiQ will also showcase HeiQ AeoniQ™, its cellulosic fiber and flagship advancement in biobased textile technologies.

The focal point of the HeiQ exhibition at ITMA Milano 2023 will be the company’s biobased textile technologies. These innovations address one of the major challenges faced by the textile industry, making fabrics more functional while contributing to a sustainable future.

The ready-to-use HeiQ technologies on display are HeiQ Allergen* Tech, providing synbiotic protection in home textiles and unmatched defense against inanimate allergens, HeiQ Cool, the dual-action cooling that keeps one cool and comfortable, even in the most demanding conditions, HeiQ Mint, the botanical odor control that provides plant-based and effective odor management, and HeiQ Fresh, for sustainable odor control.

Additionally, HeiQ will present a glimpse into the future with HeiQ’s groundbreaking carbon-positive continuous filament yarn, HeiQ AeoniQ™, that turned from an idea into a breakthrough piece of garment in just 15 months.

This cellulosic fiber has the objective to render polyester and nylon obsolete until 2030 and has attracted the support and active engagement of global partners who saw HeiQ AeoniQ™ as the solution to change the future of the textile industry.

Source:

HeiQ Materials AG

Graphic IVL
01.06.2023

Indorama Ventures and Carbios: MOU for PET biorecycling plant in France

Indorama Ventures Public Company Limited (IVL) and Carbios, a biotech company developing and industrializing biological solutions to reinvent the life cycle of plastic and textiles, announce the signing of a non-binding Memorandum of Understanding (MOU) to form a Joint Venture for the construction of the world’s first PET biorecycling plant in France.  

Based on and subject to the comprehensive terms set out in the MOU, Indorama Ventures plans to mobilize about €110 million for the Joint Venture in equity and non-convertible loan financing , pending final engineering documentation and final economic feasibility studies. Both parties have acknowledged their mutual support for the implementation of the project and their intent to finalize contract documentation before end 2023.

Subject to the successful performance of this first plant in France, Indorama Ventures confirms its intention to potentially expand the technology to other PET sites for future developments.

Indorama Ventures Public Company Limited (IVL) and Carbios, a biotech company developing and industrializing biological solutions to reinvent the life cycle of plastic and textiles, announce the signing of a non-binding Memorandum of Understanding (MOU) to form a Joint Venture for the construction of the world’s first PET biorecycling plant in France.  

Based on and subject to the comprehensive terms set out in the MOU, Indorama Ventures plans to mobilize about €110 million for the Joint Venture in equity and non-convertible loan financing , pending final engineering documentation and final economic feasibility studies. Both parties have acknowledged their mutual support for the implementation of the project and their intent to finalize contract documentation before end 2023.

Subject to the successful performance of this first plant in France, Indorama Ventures confirms its intention to potentially expand the technology to other PET sites for future developments.

Under the agreement signed June 1, Carbios, which filed for plant permitting in December 2022, should acquire 13ha land from Indorama Ventures’ existing PET plant at Longlaville and expects to be granted permits by Q3 2023, allowing start of construction by end of 2023 and targeted commissioning in 2025.  The land surface offers the possibility to double capacity. Pursuant to this MOU, Indorama Ventures shall ensure 100% of output repolymerization and both partners shall collaborate to secure feedstock supply.

The total capital investment for the new plant is re-estimated to be around €230 million, taking into account recent impact from inflation. Project costs shall be financed by the sums mobilized by Indorama Ventures, the French State and Grand-Est Region subsidies available for the project , and by equity capitalization of the Joint Venture by Carbios. Part of Carbios’ equity injection into the Joint Venture shall be financed by a portion of Carbios’ current cash position (i.e. €86 million as of 30 April 2023). Carbios is actively examining the best options to finance its remaining equity injection into the Joint Venture and will choose the most appropriate solution and timeline based on market conditions.

The project is part of Indorama Ventures’ Vision 2030 ambition to build on its leadership as a global sustainable chemical company. The company’s ESG commitments include spending $1.5 billion to increase its recycling capacity to 50 billion PET bottles per year by 2025 and 100 billion bottles per year by 2030. To meet these goals, Indorama Ventures, the world’s largest producer of recycled PET resin used in beverage bottles, is investing in new recycling technologies, including advanced recycling, in addition to expanding its global footprint of mechanical recycling sites, including two in France.

Carbios has developed a disruptive enzymatic depolymerization technology that enables efficient and solvent-free recycling of PET plastic and textile waste into virgin-like products with an aim to achieve true circularity. Carbios has ambitious plans to become a leading technology provider in advanced recycling of PET by 2035. After successful ongoing operations in its demonstration plant in Clermont-Ferrand in France, Carbios has been collaborating with Indorama Ventures for over a year to assess the commercial and technical feasibility of the technology. The world’s first industrial-scale enzymatic PET recycling plant at Longlaville will have a capacity to process about 50,000 tons of post-consumer PET waste per year, including waste that is not recyclable mechanically, equivalent to 2 billion PET colored bottles or 2.5 billion PET trays.

More information:
IVL Carbios biorecycling PET
Source:

IVL

01.06.2023

Euratex criticizes European Parliament: No balance between sustainability and competitiveness

June 1, the European Parliament has adopted its Report on an EU Strategy for Sustainable and Circular Textiles. The Report wants to step up the EU’s ambition towards sustainability and circularity even further, but it has failed to recognise the strategic role of the European textile industry to scale up sustainability, nor to appreciate the global competitive threat which our companies are facing.

Director General Dirk Vantyghem commented on the MEP Report: “We welcome the strong interest of the European Parliament in the textile and fashion industry, but encourage MEPs to develop a balanced vision which reconciles sustainability and competitiveness. Developing a new business model for our industry requires carefully crafted legislation at global level, and an open dialogue between the industry, the brands and the consumer.”

June 1, the European Parliament has adopted its Report on an EU Strategy for Sustainable and Circular Textiles. The Report wants to step up the EU’s ambition towards sustainability and circularity even further, but it has failed to recognise the strategic role of the European textile industry to scale up sustainability, nor to appreciate the global competitive threat which our companies are facing.

Director General Dirk Vantyghem commented on the MEP Report: “We welcome the strong interest of the European Parliament in the textile and fashion industry, but encourage MEPs to develop a balanced vision which reconciles sustainability and competitiveness. Developing a new business model for our industry requires carefully crafted legislation at global level, and an open dialogue between the industry, the brands and the consumer.”

EURATEX supports the EU Textile Strategy, as it was presented over a year ago by the European Commission. The 160.000 European textile companies are committed to invest in sustainability, develop new circular business models and produce high quality textile products – not just in fashion, but also in home and medical textiles, construction, agriculture or cars. To do so, indeed a new regulatory framework is needed, with clear definitions, coherent rules and effective controls. But also, the companies should be able to comply with these rules and remain globally competitive.

The EP Report has failed to respect that balance between sustainability and competitiveness. Instead, it suggests even more rules and restrictions, totally disregarding the current economic challenges caused by high energy prices, loss in consumer confidence and assertive trade partners. Putting the bar even higher will simply mean that the European textile industry will be pushed out of the market, resulting in a bigger environmental footprint and increased dependency on foreign supplies. Quite the opposite of what the EU wants to achieve with its open strategic autonomy plans.

The Report also fails to differentiate between textile products. There is a mix up between fashion and technical textiles, between products made in Europe and outside, between high quality and durable products and low-quality items. It is regretful that the European Parliament did not make that distinction and simply refers to “textiles” as a general cause of concern, without acknowledging e.g. the high quality products, made by European textile and fashion companies.

The Report puts a strong responsibility on the supply side – the industry and the brands – and does not sufficiently address the role of the consumer. Initiatives therefore are essential to create a stronger demand for sustainable textiles, which includes better communication and transparency (avoid greenwashing), fiscal measures, green public procurement and better control of online marketplaces.

On a positive note, the EP Report does recognise the importance to invest in research and innovation, to support reskilling and upskilling, the need of scaling up circular economy and pay attention to the needs of SMEs. EURATEX has always insisted that such massive transition can only be successful if accompanied by significant and dedicated support programmes. The EU Textiles Transition Pathway should offer a clear perspective in this regard.

Source:

Euratex