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nominees Graphic: nova Institut
19.01.2024

Nominated Innovations for Cellulose Fibre Innovation of the Year 2024 Award

From Resource-efficient and Recycled Fibres for Textiles and Building Panels to Geotextiles for Glacier Protection: Six award nominees present innovative and sustainable solutions for various industries in the cellulose fibre value chain. The full economic potential of the cellulose fibre industry will be introduced to a wide audience that will vote for the winners in Cologne (Germany), and online.

Again nova-Institute grants the “Cellulose Fibre Innovation of the Year” award in the context of the “Cellulose Fibres Conference”, that will take place in Cologne on 13 and 14 March 2024. In advance, the conferences advisory board nominated six remarkable products, including cellulose fibres from textile waste and straw, a novel technology for dying cellulose-based textiles and a construction panel as well as geotextiles. The innovations will be presented by the companies on the first day of the event. All conference participants can vote for one of the six nominees and the top three winners will be honoured with the “Cellulose Fibre Innovation of the Year” award. The Innovation award is sponsored by GIG Karasek (AT).

From Resource-efficient and Recycled Fibres for Textiles and Building Panels to Geotextiles for Glacier Protection: Six award nominees present innovative and sustainable solutions for various industries in the cellulose fibre value chain. The full economic potential of the cellulose fibre industry will be introduced to a wide audience that will vote for the winners in Cologne (Germany), and online.

Again nova-Institute grants the “Cellulose Fibre Innovation of the Year” award in the context of the “Cellulose Fibres Conference”, that will take place in Cologne on 13 and 14 March 2024. In advance, the conferences advisory board nominated six remarkable products, including cellulose fibres from textile waste and straw, a novel technology for dying cellulose-based textiles and a construction panel as well as geotextiles. The innovations will be presented by the companies on the first day of the event. All conference participants can vote for one of the six nominees and the top three winners will be honoured with the “Cellulose Fibre Innovation of the Year” award. The Innovation award is sponsored by GIG Karasek (AT).

In addition, the ever-growing sectors of cellulose-based nonwovens, packaging and hygiene products offer conference participants insights beyond the horizon of traditional textile applications. Sustainability and other topics such as fibre-to-fibre recycling and alternative fibre sources are the key topics of the Cellulose Fibres Conference, held in Cologne, Germany, on 13 and 14 March 2024 and online. The conference will showcase the most successful cellulose-based solutions currently on the market or those planned for the near future.

The nominees:

The Straw Flexi-Dress: Design Meets Sustainability – DITF & VRETENA (DE)
The Flexi-Dress design was inspired by the natural golden colour and silky touch of HighPerCell® (HPC) filaments based on unbleached straw pulp. These cellulose filaments are produced using environmentally friendly spinning technology in a closed-loop production process. The design decisions focused on the emotional connection and attachment to the HPC material to create a local and circular fashion product. The Flexi-Dress is designed as a versatile knitted garment – from work to street – that can be worn as a dress, but can also be split into two pieces – used separately as a top and a straight skirt. The top can also be worn with the V-neck front or back. The HPC textile knit structure was considered important for comfort and emotional properties.

HONEXT® Board FR-B (B-s1, d0) – Flame-retardant Board made From Upcycled Fibre Waste From the Paper Industry – Honext Material (ES)
HONEXT® FR-B board (B-s1, d0) is a flame-retardant board made from 100 % upcycled industrial waste fibres from the paper industry. Thanks to innovations in biotechnology, paper sludge is upcycled – the previously “worthless” residue from paper making – to create a fully recyclable material, all without the use of resins. This lightweight and easy-to-handle board boasts high mechanical performance and stability, along with low thermal conductivity, making it perfect for various applications in all interior environments where fire safety is a priority. The material is non-toxic, with no added VOCs, ensuring safety for both people and the planet. A sustainable and healthy material for the built environment, it achieves Cradle-to-Cradle Certified GOLD, and Material Health CertificateTM Gold Level version 4.0 with a carbon-negative footprint. Additionally, it is verified in the Product Environmental Footprint.

LENZING™ Cellulosic Fibres for Glacier Protection – Lenzing (AT)
Glaciers are now facing an unprecedented threat from global warming. Synthetic fibre-based geotextiles, while effective in slowing down glacier melt, create a new environmental challenge: microplastics contaminating glacial environments. The use of such materials contradicts the very purpose of glacier protection, as it exacerbates an already critical environmental problem. Recognizing this problem, the innovative use of cellulosic LENZING™ fibres presents a pioneering solution. The Institute of Ecology, at the University of Innsbruck, together with Lenzing and other partners made first trials in 2022 by covering small test fields with LENZING™ fibre-based geotextiles. The results were promising, confirming the effectiveness of this approach in slowing glacier melt without leaving behind microplastic.

The RENU Jacket – Advanced Recycling for Cellulosic Textiles – Pangaia (UK) & Evrnu (US)
PANGAIA LAB was born out of a dream to reduce barriers between people and the breakthrough innovations in material science. In 2023, PANGAIA LAB launched the RENU Jacket, a limited edition product made from 100% Nucycl® – a technology that recycles cellulosic textiles by breaking them down to their molecular building blocks, and reforming them into new fibres. This process produces a result that is 100% recycled and 100% recyclable when returned to the correct waste stream – maintaining the strength of the fibre so it doesn’t need to be blended with virgin material.
Through collaboration with Evrnu, the PANGAIA team created the world’s first 100% chemically recycled denim jacket, replacing a material traditionally made from 100% virgin cotton. By incorporating Nucycl® into this iconic fabric construction, dyed with natural indigo, the teams have demonstrated that it’s possible to replace ubiquitous materials with this innovation.

Textiles Made from Easy-to-dye Biocelsol – VTT Technical Research Centre of Finland (FI)
One third of the textile industry’s wastewater is generated in dyeing and one fifth in finishing. But the use of chemically modified Biocelsol fibres reduces waste water. The knitted fabric is made from viscose and Biocelsol fibres and is only dyed after knitting. This gives the Biocelsol fibres a darker shade, using the same amount of dye and no salt in dyeing process. In addition, an interesting visual effect can be achieved. Moreover, less dye is needed for the darker colour tone in the finished textile and the possibility to use the salt-free dyeing is more environmentally friendly.
These special properties of man-made cellulosic fibres will reassert the fibres as a replacement for the existing fossil-based fibres, thus filling the demand for more environmentally friendly dyeing-solutions in the textile industry. The functionalised Biocelsol fibres were made in Finnish Academy FinnCERES project and are produced by wet spinning technique from the cellulose dope containing low amounts of 3-allyloxy-2-hydroxypropyl substituents. The functionality formed is permanent and has been shown to significantly improve the dyeability of the fibres. In addition, the functionalisation of Biocelsol fibres reduces the cost of textile finishing and dyeing as well as the effluent load.

A New Generation of Bio-based and Resource-efficient Fibre – TreeToTextile (SE)
TreeToTextile has developed a unique, sustainable and resource efficient fibre that doesn't exist on the market today. It has a natural dry feel similar to cotton and a semi-dull sheen and high drape like viscose. It is based on cellulose and has the potential to complement or replace cotton, viscose and polyester as a single fibre or in blends, depending on the application.
TreeToTextile Technology™ has a low demand for chemicals, energy and water. According to a third party verified LCA, the TreeToTextile fibre has a climate impact of 0.6 kg CO2 eq/kilo fibre. The fibre is made from bio-based and traceable resources and is biodegradable.

More information:
Nova Institut nova Institute
Source:

nova Institut

13.03.2022

Umweltfreundliche Mulchfolien für die Landwirtschaft

  • Einladung zur Abschlusskonferenz des Projektes iMulch

Während Kunststoffe in maritimen Gewässern aktuell zahlreiche gesellschaftliche Akteure beschäftigen, finden Bodenbelastungen durch Kunststoffe in Äckern und Feldern durch landwirtschaftliche Folien bisher kaum Beachtung. Besonders Mulchfolien kommen sowohl zur Ertragssteigerung als auch infolge klimatischer Ursachen, immer häufiger zum Einsatz.

Dieser Thematik widmeten sich daher die Forschenden des Projektes iMulch. Um einen Nachweis von Kunststoffen in Böden und Drainagewässern zu erbringen und mögliche Folgen aufzuzeigen, untersuchte und verglich das Forschungsteam den Einfluss konventioneller erdölbasierter Mulchfolien mit bio-abbaubaren Alternativen.

Die gesammelten Projektergebnisse präsentiert das Konsortium mit Unterstützung externer Expertinnen und Experten am 28. April von 10-17 Uhr online im Rahmen der iMulch Abschlusskonferenz. Eine Anmeldung zur kostenlosen Teilnahme sowie die Veranstaltungsagenda finden sie unter dem folgenden Link:
http://imulch.eu/abschlusskonferenz/

  • Einladung zur Abschlusskonferenz des Projektes iMulch

Während Kunststoffe in maritimen Gewässern aktuell zahlreiche gesellschaftliche Akteure beschäftigen, finden Bodenbelastungen durch Kunststoffe in Äckern und Feldern durch landwirtschaftliche Folien bisher kaum Beachtung. Besonders Mulchfolien kommen sowohl zur Ertragssteigerung als auch infolge klimatischer Ursachen, immer häufiger zum Einsatz.

Dieser Thematik widmeten sich daher die Forschenden des Projektes iMulch. Um einen Nachweis von Kunststoffen in Böden und Drainagewässern zu erbringen und mögliche Folgen aufzuzeigen, untersuchte und verglich das Forschungsteam den Einfluss konventioneller erdölbasierter Mulchfolien mit bio-abbaubaren Alternativen.

Die gesammelten Projektergebnisse präsentiert das Konsortium mit Unterstützung externer Expertinnen und Experten am 28. April von 10-17 Uhr online im Rahmen der iMulch Abschlusskonferenz. Eine Anmeldung zur kostenlosen Teilnahme sowie die Veranstaltungsagenda finden sie unter dem folgenden Link:
http://imulch.eu/abschlusskonferenz/

Kunststoffemission in Böden
Um untersuchen zu können, ob der Einsatz von Mulchfolien auf Böden kritische Kunststoffemissionen verursacht, entwickelten die Forschenden zunächst eine umfassende Teststrategie. Diese ermöglichte es, Informationen zu Menge, Typ und Größe der Kunststoffpartikel sowie zu ihrem Transportverhalten und Verbleib im Boden zu gewinnen. Der erste Schritt bestand in der Entwicklung geeigneter Test-Methoden zur Bestimmung von Polymermenge, Polymerart und Polymergröße. Einsatz fanden besonders die Thermoextraktions-Desorptions-Gaschromatographie-Massenspektrometrie (TED-GC-MS), FT-IR-Spektrometrie und die konfokale Raman-Mikroskopie (CRM).

In Laborständen untersuchten sie parallel die Verwitterung von Folien in Böden und in Drainagewasser sowie das Adsorptionsverhalten von Folien in Bezug auf Schadstoffe. Ein weiterer Untersuchungsschwerpunkt bestand in der möglichen Toxizität der Folien auf aquatische und terrestrische Organismen. Die Ergebnisse dieser Experimente boten wertvolle Rückschlüsse zum Verhalten und Verbleib landwirtschaftlicher Folien in der Umwelt.

Über mehr als 12 Monate hinweg erforschte das Team zudem den Transport der in den Folien eingesetzten Polymere in Freilandlysimetern. Hierbei analysierten sie sowohl den Transport im Boden als auch die Aufnahme in Pflanzen. Die Ergebnisse erlauben Rückschlüsse zur Frage, ob Polymerpartikel aus dem Boden ins Grundwasser eintreten oder durch eine Aufnahme in Pflanzen in die Nahrungskette gelangen können.

Mikrobielles Upcycling durch Bakterien
Eine vielversprechende Lösung zum Abbau und zur Nutzbarmachung von Mulchfolienresten scheinen mikrobielle Upcycling-Ansätze zu bieten. Diese nutzen Mikroorganismen, welche in der Lage sind, Kunststoff-Moleküle im Rahmen von Stoffwechselprozessen umzuwandeln.

Hierbei können sie Moleküle von industriellem Interesse produzieren, beispielsweise das Biopolymer PHA. Eine Optimierung der Stoffwechselwege des Mikroorganismus Cupriavidus necator demonstrierten die Forschenden erfolgreich am Beispiel von PBAT-Monomeren und realisierten dort eine effektive Umwandlung zum Biopolymer PHA. Diese stoffliche Nutzung von Mulchfolien durch mikrobielles Upcycling kann zukünftig zu einer signifikanten Verbesserung der Ökobilanz landwirtschaftlicher Folien beitragen. Das Projekt iMulch wird mit Mitteln aus dem Europäischen Fond für regionale Entwicklung (EFRE) „Investitionen in Wachstum und Beschäftigung“ gefördert.

Source:

nova-Institut GmbH

16.12.2021

Update International Conference on Cellulose Fibres 2022

Cologne (Germany), and Online  ++ more than 70 participants registered - 250 expected ++

Cellulose fibres are a true material miracle as they offer a steadily expanding, broad range of applications. Meanwhile markets are driven by technological developments and policy frameworks, especially bans and restrictions on plastics, as well as an increasing number of sustainability requirements. The  presentations will provide valuable information on the various use-opportunities for cellulosic fibres through a policy overview, a special session on sustainability, recycling and alternative feedstocks, as well as the latest developments in pulp, cellulosic fibres and yarns. In addition, examples of non-wovens,  packaging and composites will offer a look beyond the horizon of conventional application fields.

Cologne (Germany), and Online  ++ more than 70 participants registered - 250 expected ++

Cellulose fibres are a true material miracle as they offer a steadily expanding, broad range of applications. Meanwhile markets are driven by technological developments and policy frameworks, especially bans and restrictions on plastics, as well as an increasing number of sustainability requirements. The  presentations will provide valuable information on the various use-opportunities for cellulosic fibres through a policy overview, a special session on sustainability, recycling and alternative feedstocks, as well as the latest developments in pulp, cellulosic fibres and yarns. In addition, examples of non-wovens,  packaging and composites will offer a look beyond the horizon of conventional application fields.

The third session of the conference, "Sustainability and Circular Economy", highlights crucial issues with regard to the overall goal of keeping the environmental impact of cellulose fibres low. A core theme of the session is the responsible use of wood and forests. With this objective, the five speakers of the session discuss the importance of circular concepts for cellulose feedstocks. Exciting insights into the important "Hot Button Report" are offered by Canopy. The "Hot Button Report” enables the producers of cellulose fibres to better understand the impact their raw materials have on forests and the climate development worldwide.

Final program: https://cellulose-fibres.eu/program/

Source:

nova-Institut

30.08.2021

The Renewable Carbon Initiative RCI is joining forces

  • From fossil to renewable materials: Members advocate policy analysis and focused implementation of the renewable carbon strategy

The members of the Renewable Carbon Initiative (RCI) (www.renewable-carbon-initiative.com), founded in September 2020, have joined forces to shape the transition from the fossil to the renewable age for the chemical and materials industry. This means spreading the concept of renewable carbon and developing new value chains based on renewable carbon as a feedstock.

In the meantime, several activities have started from which future members can benefit as well. First and foremost is the kick-off to comprehensive policy analysis. What influence will forthcoming regulation have on chemicals, plastics, and other materials? When and where should the renewable carbon idea be emphasized and referred to?

The policy analysis will examine pending policies in the European Union – and a later expansion to America and Asia is planned as well.

  • From fossil to renewable materials: Members advocate policy analysis and focused implementation of the renewable carbon strategy

The members of the Renewable Carbon Initiative (RCI) (www.renewable-carbon-initiative.com), founded in September 2020, have joined forces to shape the transition from the fossil to the renewable age for the chemical and materials industry. This means spreading the concept of renewable carbon and developing new value chains based on renewable carbon as a feedstock.

In the meantime, several activities have started from which future members can benefit as well. First and foremost is the kick-off to comprehensive policy analysis. What influence will forthcoming regulation have on chemicals, plastics, and other materials? When and where should the renewable carbon idea be emphasized and referred to?

The policy analysis will examine pending policies in the European Union – and a later expansion to America and Asia is planned as well.

A particular focus will be placed on upcoming policies and regulations and how they impact renewable carbon. The members are currently deciding on where to start specifically, but questions that may be considered are: What does the new climate law and the “Fit for 55-Package” mean for chemicals and materials? What can be expected from REACH and microplastics restrictions? How relevant is the “Sustainable Products Initiative” and the coming restrictions for Green Claims? Circular Economy, Zero Pollution and Sustainable Financing are keywords of the future European landscapes, which might become very concrete for chemistry and materials in the next few years. To what extent the concept of renewable carbon for materials is considered in policy already and how it could be further introduced in future legislation are two of the main questions investigated in the working group “Policy”.

This working group is open to all members of RCI. Policy experts provide the respective analysis as a foundation, organising discussions between members of the policy group and plan meetings with policymakers to introduce the Renewable Carbon concept.

Additional working groups have been created, one with a focus on communication, the other looking at the development of a renewable carbon label. In early September, a renewable carbon community will be launched as a starting point for even more interaction between the members, to discuss strategies, create new value chains and start project consortia.

The Renewable Carbon Initiative (RCI) is a dynamic and ambitious group of interested parties. Membership numbers have now more than doubled since the launch almost a year ago, with RCI now boasting 25 members, 6 partners and over 200 supporters. It welcomes all companies that are on the way to transform their resource base from fossil to renewable.

More information:
Renewable Carbon Initiative
Source:

nova-Institut für politische und ökologische Innovation GmbH für RCI