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DITF: Textile structures regulate water flow of rain-retaining "Living Wall" (c) DITF
Outdoor demonstrator on the Research CUBUS. At the top is the textile water reservoir with all inputs and outputs and textile valve for rapid emptying. Below are the substrate blocks with integrated hydraulic textiles
30.06.2023

DITF: Textile structures regulate water flow of rain-retaining "Living Wall"

Climate change is causing temperatures to rise and storms to increase. Especially in inner cities, summers are becoming a burden for people. While densification makes use of existing infrastructure and avoids urban sprawl, it increases the amount of sealed surfaces. This has a negative impact on the environment and climate. Green facades bring more green into cities. If textile storage structures are used, they can even actively contribute to flood protection. The German Institutes of Textile and Fiber Research (DITF) have developed a corresponding "Living Wall".

The plants on the green facades are supplied with water and nutrients via an automatic irrigation system. The "Living Walls" operate largely autonomously. Sensory yarns detect the water and nutrient content. The effort for care and maintenance is low.

Climate change is causing temperatures to rise and storms to increase. Especially in inner cities, summers are becoming a burden for people. While densification makes use of existing infrastructure and avoids urban sprawl, it increases the amount of sealed surfaces. This has a negative impact on the environment and climate. Green facades bring more green into cities. If textile storage structures are used, they can even actively contribute to flood protection. The German Institutes of Textile and Fiber Research (DITF) have developed a corresponding "Living Wall".

The plants on the green facades are supplied with water and nutrients via an automatic irrigation system. The "Living Walls" operate largely autonomously. Sensory yarns detect the water and nutrient content. The effort for care and maintenance is low.

Innovative hydraulic textile structures regulate water flow. The rock wool plant substrate on which the plants grow has a large volume in a small space thanks to its structure. Depending on how heavy the precipitation is, the rainwater is stored in a textile structure and later used to irrigate the plants. In the event of heavy rainfall, the excess water is discharged into the sewage system with a time delay. In this way, the "Living Walls" developed at the DITF help to make efficient use of water as a resource in post-densified urban areas.

The research project also scientifically investigated the cooling performance of a green facade. Modern textile technology in the substrate promotes the "transpiration" of the plants. This creates evaporative cooling and lowers temperatures in the surrounding area.

The work of the Denkendorf research team also included a cost-benefit calculation and a life-cycle analysis. Based on the laboratory and outdoor studies, a "green value" was defined that can be used to evaluate and compare the effect of greening buildings as a whole.

23.06.2023

INDA receives United Nations Accreditation

INDA, the Association of the Nonwoven Fabrics Industry, was granted status last month as an accredited stakeholder with the United Nations Environment Programme (UNEP), which, among other privileges, will allow representatives from the association to observe the formal ongoing negotiations of the UN Global Plastics Treaty. INDA Government Affairs Director Wes Fisher was on site at the second session of the treaty negotiations formally titled the “second session of the Intergovernmental Negotiating Committee to develop an international legally binding instrument on plastic pollution, including in the marine environment.” The negotiations took place from 29 May to 2 June 2023 at the United Nations Educational, Scientific and Cultural Organization (UNESCO) Headquarters in Paris, France.

“We are excited to continue to enhance the capacity of INDA’s government affairs department to better serve the industry on a global scale,” stated Fisher. “We look forward to working with the UNEP to provide technical input regarding ongoing plastics treaty issues specific to the nonwovens industry, and engaging with other UN processes with our new status as an accredited stakeholder.”

INDA, the Association of the Nonwoven Fabrics Industry, was granted status last month as an accredited stakeholder with the United Nations Environment Programme (UNEP), which, among other privileges, will allow representatives from the association to observe the formal ongoing negotiations of the UN Global Plastics Treaty. INDA Government Affairs Director Wes Fisher was on site at the second session of the treaty negotiations formally titled the “second session of the Intergovernmental Negotiating Committee to develop an international legally binding instrument on plastic pollution, including in the marine environment.” The negotiations took place from 29 May to 2 June 2023 at the United Nations Educational, Scientific and Cultural Organization (UNESCO) Headquarters in Paris, France.

“We are excited to continue to enhance the capacity of INDA’s government affairs department to better serve the industry on a global scale,” stated Fisher. “We look forward to working with the UNEP to provide technical input regarding ongoing plastics treaty issues specific to the nonwovens industry, and engaging with other UN processes with our new status as an accredited stakeholder.”

Accreditation provides non-governmental organizations with observer status to the United Nations Environment Assembly, UNEP, and its subsidiaries. Accreditation will bring many advantages to INDA with respect to participation in the work of UNEP’s Governing Bodies, such as the United Nations Environment Assembly of UNEP and the Committee of Permanent Representatives.

UN Global Plastics Treaty negotiations have garnered significant attention from both industry and environmental groups. At least three more negotiation sessions are expected with the goal of finalizing a treaty by the end of 2024.

(c) RadiciGroup
17.03.2023

RadiciGroup: 100% naturally sourced yarn made from castor oil

RadiciGroup presented Biofeel® Eleven, a yarn of natural origin, at the Performance Days trade fair (from March 15-16 in Munich). Biofeel® Eleven is sourced from castor oil and is suitable for obtaining bio-polymer. It can be used for fabrics and fine garments in many sectors, from fashion to sports, from automotive to home textiles.

Today, 80% of the world's castor-oil plantations are in India, particularly in the Gujarat region, due to its favourable climatic conditions. In this area, local people can earn an additional income by cultivating semi-arid land that does not compete with food production, and by applying the skills they have acquired over time to this work. Over the years, thanks to research, development and innovation in the value chain, the seeds from which the oil is produced have been selected and certified to ensure the finest quality, also in terms of end uses.

Castor beans contain around 45% oil, rich in ricinolein, from which the bio-polymer polyamide 11 is derived. This is the polymer RadiciGroup uses for its Biofeel® Eleven yarn. What remains after the first pressing is a highly effective bio-fertiliser that is returned to the soil.

RadiciGroup presented Biofeel® Eleven, a yarn of natural origin, at the Performance Days trade fair (from March 15-16 in Munich). Biofeel® Eleven is sourced from castor oil and is suitable for obtaining bio-polymer. It can be used for fabrics and fine garments in many sectors, from fashion to sports, from automotive to home textiles.

Today, 80% of the world's castor-oil plantations are in India, particularly in the Gujarat region, due to its favourable climatic conditions. In this area, local people can earn an additional income by cultivating semi-arid land that does not compete with food production, and by applying the skills they have acquired over time to this work. Over the years, thanks to research, development and innovation in the value chain, the seeds from which the oil is produced have been selected and certified to ensure the finest quality, also in terms of end uses.

Castor beans contain around 45% oil, rich in ricinolein, from which the bio-polymer polyamide 11 is derived. This is the polymer RadiciGroup uses for its Biofeel® Eleven yarn. What remains after the first pressing is a highly effective bio-fertiliser that is returned to the soil.

Biofeel® Eleven can also be solution dyed, i.e. dyed at the yarn production stage, saving a great deal of water and energy and also providing greater colour stability.

Source:

RadiciGroup

22.06.2022

GOTS Standard revision process enters next phase

The ongoing revision process to the GOTS Standard document and supporting Manual for Implementation garnered a robust response during its first public comment period, which ended on June 13 and elicited over 300 inputs. Of that, about 60 percent of comments were related to technical criteria such as ecology, chemical inputs, and material quality; and around 30 percent concerned GOTS social criteria. The Standard sets forth the requirements for organic textiles throughout the entire processing chain. GOTS’s commitment to making every version stronger ensures that the Standard continues to be a dynamic and evolving document and remain at the forefront as the most recognized and respected global standard for textiles.

The first draft of the revised standard, GOTS version 7.0, was made available for an initial 60-day comment period. Stakeholders, associations, organisations, companies and individuals were encouraged to contribute to the revision of the Standard during this timeframe. The Standard is updated every three years, ensuring that GOTS keeps up with advances in the industry and developments in the science and technology of textile processing.

The ongoing revision process to the GOTS Standard document and supporting Manual for Implementation garnered a robust response during its first public comment period, which ended on June 13 and elicited over 300 inputs. Of that, about 60 percent of comments were related to technical criteria such as ecology, chemical inputs, and material quality; and around 30 percent concerned GOTS social criteria. The Standard sets forth the requirements for organic textiles throughout the entire processing chain. GOTS’s commitment to making every version stronger ensures that the Standard continues to be a dynamic and evolving document and remain at the forefront as the most recognized and respected global standard for textiles.

The first draft of the revised standard, GOTS version 7.0, was made available for an initial 60-day comment period. Stakeholders, associations, organisations, companies and individuals were encouraged to contribute to the revision of the Standard during this timeframe. The Standard is updated every three years, ensuring that GOTS keeps up with advances in the industry and developments in the science and technology of textile processing.

Beginning in 2022, the GOTS revision process is following a newly developed and more inclusive Standard Setting Procedure, which includes oversight of the process by a Standard Revision Committee (SRC). The SRC consists of experts from different stakeholder groups, including scientists, textile industry professionals, sustainability, sourcing and human rights specialists and others. Members work together throughout the entire revision process to establish terms of reference and make decisions on any changes.

The comments received are being compiled and will be available for viewing on the GOTS website shortly. For the next stage of the revision process, the SRC will deliberate all comments, and a second draft of the revision will be released for a second and final 30-day period of public input in September 2022, which will be announced on the GOTS website and social media. The final version of the revised standard, GOTS version 7.0 will be released in March 2023, and will come into effect one year later.

More information:
GOTS revision
Source:

GOTS

Oerlikon Barmag celebrates its 100th anniversary (c) Oerlikon Barmag
A look at the state-of-the-art assembly of a WINGS winder
30.03.2022

Oerlikon Barmag celebrates its 100th anniversary

  • Innovation begins with creativity
  • A pioneer of the manmade fiber industry

When the manmade fiber age began a century ago, a German company was responsible for the pioneering work involved. Barmag, established in 1922, was one of the world’s first companies to construct machines for the large-scale production of synthetic staple fibers. To this day, the leading manufacturer of manmade fiber spinning systems and texturing machines in Remscheid – a brand under the aegis of the Swiss Oerlikon Group since 2007 – has shaped technological progress in this sector; in future, with ever more innovations focusing on sustainability and digitalization.

  • Innovation begins with creativity
  • A pioneer of the manmade fiber industry

When the manmade fiber age began a century ago, a German company was responsible for the pioneering work involved. Barmag, established in 1922, was one of the world’s first companies to construct machines for the large-scale production of synthetic staple fibers. To this day, the leading manufacturer of manmade fiber spinning systems and texturing machines in Remscheid – a brand under the aegis of the Swiss Oerlikon Group since 2007 – has shaped technological progress in this sector; in future, with ever more innovations focusing on sustainability and digitalization.

Barmer Maschinenfabrik Aktiengesellschaft (Barmag) is founded in Barmen, located in the Bergische Land region, on March 27, 1922. The German and Dutch founders enter unchartered technological territory, one created as the result of a groundbreaking invention: in 1884, French chemist Count Hilaire Bernigaud de Chardonnet used nitrocellulose to produce the first so-called artificial silk, later known as rayon. The following decades see rapid development focusing on the search for synthetic textile fibers and their manufacturing technologies. As one of the first machine factories, Barmag battles its way through the eventful early years of the manmade fiber industry, the ‘Roaring Twenties’ and the Great Depression – and suffers the extensive destruction of its factories at the end of World War Two. Rebuilding is successful. With the unstoppable success story of purely synthetic plastic fibers such as polyamide, the company flourishes from the 1950s through to the 1970s, establishing sites in all international, for the textile industry at the time important, industrial regions and garnering prestige across the globe in the process. In the ups and downs of expansion, global competition and crises, Barmag reaches the very pinnacle of the market and becomes the preferred technological development partner for the manmade fiber industries in China, India and Turkey. The company has been a high-impact brand under the umbrella of the Oerlikon Group since 2007.

On the wings of innovation
Today, Oerlikon Barmag is a leading supplier of manmade fiber filament spinning systems and part of the Manmade Fibers Solutions business unit of the Oerlikon Polymer Processing Solutions Division. And our aspirations have not diminished: “The striving towards innovation and technological leadership has been, is and will always be part of our DNA”, emphasizes Georg Stausberg, CEO of Oerlikon Polymer Processing Solutions. In the past, this has been observable in such trailblazing innovations as the revolutionary WINGS generation of winders for POY in 2007 and WINGS for FDY in 2012. Currently, the focus of new and further developments is very much on digitalization and sustainability. Here, Oerlikon Barmag has – as one of the world’s first systems manufacturers – been implementing fully-networked smart factories for globally-leading polyester manufacturers since the end of the last decade. Within this context, digital solutions and automation are also helping to provide greater climate and environmental compatibility. This sustainability commitment is not only evidenced by the e-save label introduced for all products back in 2004: Oerlikon is endeavoring to also make all its sites carbon-neutral by 2030 and to acquire its energy exclusively from renewable sources. An ambitious target, whose achievement could be helped by the Oerlikon Barmag anniversary, states Georg Stausberg: “Innovation begins with creativity. And remembering the past provides plenty of motivation and inspiration for the future.”

Huesker: Geogitter aus PET-Recycling-Garn (c) Huesker Gruppe
01.03.2021

Huesker: Geogitter aus PET-Recycling-Garn

  • 100 % Recyclinggarn in Originalfaserqualität
  • Ressourcen- und CO2-Einsparungen
  • Wirtschaftlich und nachhaltig

Das langjährig bewährte Geogitter Fortrac T ist ab sofort auch in der ecoLine verfügbar. Der HUESKER Gruppe ist es gelungen, das Geogitter für die Bewehrung von Erdkonstruktionen aus 100 Prozent recycelten PET-Garnen herzustellen. Zuvor hatte das Unternehmen bereits erfolgreich einen weiteren Produktklassiker, die Asphaltbewehrung HaTelit C eco, ebenfalls aus PET-Recycling-Garnen, in der ecoLine eingeführt.

„Unsere Geogitter der ecoLine erfüllen dieselben hohen Qualitätsstandards wie das Ursprungsprodukt aus Originalfasern. Fortrac T eco wird aus hochmodulen Polyestergarnen hergestellt und hält Zugkräften bis 1.600 kN/m stand“, erklärt Sven Schröer, Geschäftsführer für die weltweiten Vertriebs- und Anwendungstechnikaktivitäten der HUESKER Gruppe im Bereich Geokunststoffe.

  • 100 % Recyclinggarn in Originalfaserqualität
  • Ressourcen- und CO2-Einsparungen
  • Wirtschaftlich und nachhaltig

Das langjährig bewährte Geogitter Fortrac T ist ab sofort auch in der ecoLine verfügbar. Der HUESKER Gruppe ist es gelungen, das Geogitter für die Bewehrung von Erdkonstruktionen aus 100 Prozent recycelten PET-Garnen herzustellen. Zuvor hatte das Unternehmen bereits erfolgreich einen weiteren Produktklassiker, die Asphaltbewehrung HaTelit C eco, ebenfalls aus PET-Recycling-Garnen, in der ecoLine eingeführt.

„Unsere Geogitter der ecoLine erfüllen dieselben hohen Qualitätsstandards wie das Ursprungsprodukt aus Originalfasern. Fortrac T eco wird aus hochmodulen Polyestergarnen hergestellt und hält Zugkräften bis 1.600 kN/m stand“, erklärt Sven Schröer, Geschäftsführer für die weltweiten Vertriebs- und Anwendungstechnikaktivitäten der HUESKER Gruppe im Bereich Geokunststoffe.

Source:

HUESKER Synthetic GmbH

15.11.2019

IVGT: Mehrkosten durch geplante CO2-Bepreisung belasten Textilveredlung und Vliesstoffherstellung überdurchschnittlich

Der IVGT ( Industrieverband Veredlung - Garne - Gewebe - Technische Textilien e.V. ) befürwortet effiziente Maßnahmen zum Klimaschutz. Das geplante Brennstoffemissionshandelsgesetz sei jedoch wenig durchdacht und solle eilig durch den Bundestag getrieben werden. Die geplante Umsetzung werde dazu führen, dass insbesondere die Textilveredlungsbetriebe und die Vliesstoffhersteller in Deutschland die geplanten hohen zusätzlichen Mehrkosten finanziell nicht mehr tragen könnten, da sie bereits seit vielen Jahren in energiesparende Techniken investiert hätten, so der Verband in einer Pressemitteilung.

Bereits heute belasteten hohe Energiesteuern und Abgaben die Unternehmen in der Textilindustrie. Mit einem Gesetz über ein nationales Emissionshandelssystem für Brennstoffemissionen soll die von der Bundesregierung vorgeschlagene CO2-Bepreisung umgesetzt werden.

Der IVGT ( Industrieverband Veredlung - Garne - Gewebe - Technische Textilien e.V. ) befürwortet effiziente Maßnahmen zum Klimaschutz. Das geplante Brennstoffemissionshandelsgesetz sei jedoch wenig durchdacht und solle eilig durch den Bundestag getrieben werden. Die geplante Umsetzung werde dazu führen, dass insbesondere die Textilveredlungsbetriebe und die Vliesstoffhersteller in Deutschland die geplanten hohen zusätzlichen Mehrkosten finanziell nicht mehr tragen könnten, da sie bereits seit vielen Jahren in energiesparende Techniken investiert hätten, so der Verband in einer Pressemitteilung.

Bereits heute belasteten hohe Energiesteuern und Abgaben die Unternehmen in der Textilindustrie. Mit einem Gesetz über ein nationales Emissionshandelssystem für Brennstoffemissionen soll die von der Bundesregierung vorgeschlagene CO2-Bepreisung umgesetzt werden.

Die Textilindustrie, insbesondere die Textilveredlung und die Vliesstoffherstellung, werden von der Erhöhung der Brennstoffkosten massiv betroffen sein. Die Auswirkungen des Gesetzes auf die Unternehmen werden erheblich sein, weil die geplanten 10 Euro/t CO2 bei den mittelständisch geprägten Unternehmen hohe sechsstellige Mehrkosten verursachen und dies nur der Beginn eines Preispfades ist und die Kosten weiter ansteigen sollen. Für viele Textilveredlungsbetriebe und Vliesstoffhersteller ist diese Entwicklung existenzbedrohend.

Die Textilveredlung und die Vliesstoffherstellung gehören zu den energieintensiven Branchen. Dort geht praktisch nichts ohne Energie. Für die wichtigsten Prozesse werden Gas oder Heizöl zur Wärmeerzeugung benötigt.

Je nach Struktur und Produktionssortiment des Betriebes sind mittlerweile mehr als ein Viertel der Kosten Energiekosten. Mit dieser dramatischen Entwicklung der Energiekosten sehen viele Unternehmer(innen) akute Gefahr für ihren Betrieb und die damit verbundenen Arbeitsplätze.

More information:
CO2-Bepreisung IVGT
Source:

IVGT Industrieverband Veredlung - Garne - Gewebe - Technische Textilien e.V.