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16.05.2023

Virgin PET verdrängt PET-Recyclate

Neuware ist, seitdem sich die Logistikketten nach Corona in der 2. Jahreshälfte 2022 wieder neu sortiert haben, sehr billig in Europa und verdrängt PET-Recyclate, so der bvse-Fachverband Kunststoffrecycling.

Neuware ist, seitdem sich die Logistikketten nach Corona in der 2. Jahreshälfte 2022 wieder neu sortiert haben, sehr billig in Europa und verdrängt PET-Recyclate, so der bvse-Fachverband Kunststoffrecycling.

"Die hohe Inflation führt außerdem zu Konsumverzicht bei den Verbrauchern und dadurch leidet die Nachfrage bei den Verpackungsherstellern. Im Ergebnis geraten die Recyclingunternehmen derzeit massiv unter Druck“, beschreibt Dr. Dirk Textor, Vorsitzender des bvse-Fachverband Kunststoffrecycling, die aktuelle Situation.
 
Jüngstes Beispiel für die angespannte Lage ist die Schließung des PET-Recycling-Standorts von Veolia in Rostock. Der Absatz von Flakes und Regranulaten stockt – der dauerhafte, wirtschaftliche Betrieb seiner PET-Recyclinganlage ist für Veolia nicht mehr möglich. Eine Absicherung des Absatzes von recyceltem PET ist in Zusammenarbeit mit der Getränkeindustrie und/oder dem Handel nicht gelungen, hieß es zur Begründung.
 
„Wir sehen das gesamte PET-Recycling in einer Schieflage, weil Abfüller und Inverkehrbringer von PET-Verpackungen ihrer Produktverantwortung nicht nachkommen. Eine mittelfristige Besserung der Situation ist nicht in Sicht. Die PET-Verarbeiter setzen auf Neuware und listen die Recyclate aus“, kritisiert Textor.
 
Dieses Verhalten der PET-Verarbeiter ist nach Auffassung des bvse-Fachverband Kunststoffrecycling „sehr überraschend“, weil Recycling-PET der einzige Kunststoff ist, der bei Verpackungen mit direktem Lebensmittelkontakt eingesetzt werden kann. Das jetzt zu beobachtende Marktverhalten der PET-Verarbeiter, die ausschließlich auf Neuware setzen, sei kurzsichtig und hoch problematisch, heißt es beim bvse. Man dürfe nicht annehmen, dass eine stillgelegte Anlage innerhalb kurzer Zeit wieder hochgefahren werden kann. Anlagen müssen kontinuierlich betrieben werden, um die benötigten Mengen in geeigneten Qualitäten darstellen zu können. Im schlimmsten Fall verschwindet die Anlage sogar ganz vom Markt.
 
„Und damit wird es eng werden, sehr eng, wenn in Kürze die hohen Anforderungen der europäischen Kunststoffstrategie umzusetzen sind. Nicht zuletzt werden bei der Novellierung der europäischen Verpackungsverordnung sehr ambitionierte Recyclateinsatzquoten definiert. Auch deshalb wird es in Europa zu einem Verteilungskampf um Recycling-PET kommen“, so bvse-Fachverbandsvorsitzender Dirk Textor.

Source:

bvse-Fachverband Kunststoffrecycling

Die beiden Preisträgerinnen Nadine Bullerdiek (l.) und Antonia Dannenberg Foto Hochschule Niederrhein
12.05.2023

Wilhelm-Lorch-Preis für Antonia Dannenberg und Nadine Bullerdiek

Die Studentinnen Antonia Dannenberg und Nadine Bullerdiek vom Fachbereich Textil- und Bekleidungstechnik der Hochschule Niederrhein sind von der Wilhelm-Lorch-Stiftung ausgezeichnet worden. Dannenberg erhielt den Preis in der Kategorie Technik für ihre Arbeit „Graphen in alpiner Wintersportbekleidung“, Bullerdiek hatte die Jury mit ihrer englischsprachigen Arbeit „Dyeing of Poly(lactic acid) Fibres for Circular Textile Products“ überzeugen können. Der Preis ist mit 5000 Euro dotiert.

In der Arbeit von Antonia Dannenberg (Betreuende Professor:innen Dr. Robert Groten & Karin Stark) werden unterschiedliche mit Graphen ausgerüstete Polyesterproben hinsichtlich ihrer Wärmeleitfähigkeit untersucht. Graphen ist eine zweidimensionale Kohlenstoffatomschicht mit einzigartigen Eigenschaften. Viele Outdoor-Bekleidungshersteller bringen immer mehr mit Graphen ausgerüstete Produkte auf den Markt. Insbesondere in der alpinen Wintersportbekleidung gewinnt der Werkstoff zunehmend an Bedeutung.

Die Studentinnen Antonia Dannenberg und Nadine Bullerdiek vom Fachbereich Textil- und Bekleidungstechnik der Hochschule Niederrhein sind von der Wilhelm-Lorch-Stiftung ausgezeichnet worden. Dannenberg erhielt den Preis in der Kategorie Technik für ihre Arbeit „Graphen in alpiner Wintersportbekleidung“, Bullerdiek hatte die Jury mit ihrer englischsprachigen Arbeit „Dyeing of Poly(lactic acid) Fibres for Circular Textile Products“ überzeugen können. Der Preis ist mit 5000 Euro dotiert.

In der Arbeit von Antonia Dannenberg (Betreuende Professor:innen Dr. Robert Groten & Karin Stark) werden unterschiedliche mit Graphen ausgerüstete Polyesterproben hinsichtlich ihrer Wärmeleitfähigkeit untersucht. Graphen ist eine zweidimensionale Kohlenstoffatomschicht mit einzigartigen Eigenschaften. Viele Outdoor-Bekleidungshersteller bringen immer mehr mit Graphen ausgerüstete Produkte auf den Markt. Insbesondere in der alpinen Wintersportbekleidung gewinnt der Werkstoff zunehmend an Bedeutung.

Eingearbeitet in textile Flächen bzw. Bekleidung, soll Graphen diesen die Eigenschaft verleihen, Wärme von erhitzen Stellen der Bekleidung an kühlere Stellen zu leiten. Durch diesen Wärmeausgleich würden Sportler:innen potenziell weniger Energie verbrauchen und wären somit leistungsfähiger. Dannenbergs Arbeit hat sich mit der Frage auseinandergesetzt, ob Graphen tatsächlich zur Optimierung der Wärmeleitfähigkeit der Textilien beitragen.

Die durchgeführte Untersuchung hat gezeigt, dass die Wärme sich im aktuellen Forschungsstadium noch nicht wie gewünscht über das Textil verteilt. Keine Probe wies erkennbare Veränderungen auf. Zum jetzigen Zeitpunkt befindet sich die Übertragung der Eigenschaften von Graphen auf textile Flächen in einem frühen Forschungsstadium. Eine Kommerzialisierung von textilen Graphen-Produkten ist demnach aus Forschungssicht bisher noch nicht ausreichend umsetzbar. Aufgrund des weltweiten Interesses ist aber damit zu rechnen, dass in naher Zukunft das Material alltagstauglich und funktionsoptimierend in Bekleidung integriert werden kann. Antonia Dannenberg rundete ihre technische Arbeit mit einer zusätzlichen Designarbeit zum Thema Sportswear ab.

Nadine Bullerdiek hat sich in ihrer Bachelorarbeit („Dyeing of Poly(lactic acid) Fibres for Circular Textile Products”) mit dem Färben von PLA-Fasern für kreislauffähige textile Produkte auseinandergesetzt (Betreuende Professorin: Dr. Maike Rabe).

PLA-Fasern (engl. poly(lactic acid)) gelten als vielversprechende Alternative zu konventionellen Polyesterfasern. Sie sind biobasiert, recyclingfähig und unter industriellen Bedingungen biologisch abbaubar. Somit eignen sie sich für die Herstellung kreislauffähiger Textilien.

Das Problem: PLA-Fasern sind hydrolyseanfällig, besonders unter alkalischen Bedingungen und hohen Temperaturen. Dies bedeutet, dass es beim Färben im Wasserbad zu einem Festigkeitsverlust der Fasern kommen kann. Die Preisträgerin hat in ihrer Arbeit die Auswirkungen der Färbeparameter Zeit, Temperatur und pH-Wert auf die Festigkeit und Farbintensität eines PLA-Zwirns untersucht. So konnten die idealen Färbebedingungen mit möglichst hoher Farbintensität und möglichst geringem Festigkeitsverlust für das Färben des PLA-Zwirns mit Dispersionsfarbstoffen ermittelt werden. Die Arbeit wurde in Kooperation mit dem niederländischen Start-up Arapaha durchgeführt.

Source:

Hochschule Niederrhein

(c) Sadia Rafique
10.05.2023

Renewcell partners with TextileGenesis™ for Circulose® Pulp-to-Retail Transparency

After participating in industry trials, Renewcell and TextileGenesis™ have the intention to establish an agreement for full pulp-to-retail traceability for Renewcell’s CIRCULOSE® recycled raw material across the entire textile supply chain, announcing it at Challenge the Fabric (Milan, Italy).

Renewcell uses a patented process to breakdown and recycle cotton and other cellulosic textile waste, such as worn-out jeans and production scraps, to create CIRCULOSE®, a biodegradable raw material that can be used to create viscose, lyocell, modal, acetate and other man-made cellulosic fibers. These regenerated fibers are then spun into yarns, woven or knitted into fabrics before being cut and sewn into new high-quality textile products.
 
With TextileGenesis™, Renewcell will be able to share real-time digital traceability with its customers and supply chain partners.

After participating in industry trials, Renewcell and TextileGenesis™ have the intention to establish an agreement for full pulp-to-retail traceability for Renewcell’s CIRCULOSE® recycled raw material across the entire textile supply chain, announcing it at Challenge the Fabric (Milan, Italy).

Renewcell uses a patented process to breakdown and recycle cotton and other cellulosic textile waste, such as worn-out jeans and production scraps, to create CIRCULOSE®, a biodegradable raw material that can be used to create viscose, lyocell, modal, acetate and other man-made cellulosic fibers. These regenerated fibers are then spun into yarns, woven or knitted into fabrics before being cut and sewn into new high-quality textile products.
 
With TextileGenesis™, Renewcell will be able to share real-time digital traceability with its customers and supply chain partners.

  • The platform uses digital tokens to ensure a secure chain of custody for all supply chain processes from raw materials to retail.
  • The company’s “fiber-forwards” traceability captures real-time shipments; its Fibercoins™ digital tokens verify point of origin and eliminate “double counting” of sustainable materials.
  • Its AI (augmented intelligence) engine verifies transactions between supply chain partners.  

 
Furthermore, TextileGenesis™ is already partnering with fiber producers including Lenzing AG, Eastman, and Birla Cellulose.

Source:

Re:NewCell AB

Recycled yarn (c) ITA Aachen
05.05.2023

ITA at the ITMA: Smart Circular Economy

"ITA Aachen and ITA Augsburg are part of the ITA Group International Centre for Sustainable Textiles. Experience our textile innovations at two exhibition booths," explains ITA Institute Director Professor Dr. Thomas Gries. "See our ring spinning tester at booth H3-B304, which spins recycled fibres sustainably and individually in a previously impossible fineness. In addition, there is digital yarn monitoring, which enables new market potentials. Get an idea of the Recycling Atelier of ITA Augsburg at booth H3-A207 and see the textile cycle from used textile to solution steps for industrial implementation together with industry partners. Join us on the Walk4Recycling and follow the path from used textile to a new knitted pullover on a tour of the trade fair. This is how we live up to our claim as the ITA Group: sustainable - digital - individual."

"ITA Aachen and ITA Augsburg are part of the ITA Group International Centre for Sustainable Textiles. Experience our textile innovations at two exhibition booths," explains ITA Institute Director Professor Dr. Thomas Gries. "See our ring spinning tester at booth H3-B304, which spins recycled fibres sustainably and individually in a previously impossible fineness. In addition, there is digital yarn monitoring, which enables new market potentials. Get an idea of the Recycling Atelier of ITA Augsburg at booth H3-A207 and see the textile cycle from used textile to solution steps for industrial implementation together with industry partners. Join us on the Walk4Recycling and follow the path from used textile to a new knitted pullover on a tour of the trade fair. This is how we live up to our claim as the ITA Group: sustainable - digital - individual."

ITA Aachen - Digital ring spinning tester for recycled fibres enables spinning of fine yarns with high recycled fibres content
The Institut für Textiltechnik of RWTH Aachen University (ITA) will be exhibiting a digital ring spinning tester, which spins recycled fibres directly and conventionally with a particularly high content of 60-70 percent. Up to now, recycled yarns have mainly been rotor-spun in this blend ratio. This results in rather coarse yarns and is not suitable for finer textiles such as outerwear. Ring spinning of recycled yarns now enables the spinning of finer yarns and thus a higher application level for recycled materials.

A unique selling point of the ITA ring spinning tester is the simultaneous spinning in the direct spinning process from the sliver and in the classic ring spinning process. For this purpose, the strength and elongation of the spun yarn are determined online and digitally for the first time. The real-time measurement allows process parameters and yarn properties to be adjusted iteratively and quickly. The ring spinning tester was upgraded from an existing tester to Industry 4.0 standard and is operated via a tablet. Operation via tablet enables the adjustment of process parameters including online quality monitoring remotely from anywhere in the world.
 
For this purpose, the ring spinning tester is also able to produce fine ring spun yarns. These yarns made from recycled material opens up a multitude of further fields of application for woven and knitted goods. Now, for example, clothing and technical textiles can be made from recycled material, the production of which was not possible before - such as outerwear made from recycled material. The development of new industries and fields of application opens up new market potential for recycled yarns - also and especially for processing in Europe. This creates the opportunity to preserve key technologies and jobs in cost-intensive locations.

ITA Augsburg - Recycling Atelier: Walk4Recycling
The Recycling Atelier of the Institut für Textiltechnik Augsburg gGmbH on stand H3-A207 presents the textile recycling from used textiles into new products via the various process steps and, together with the industrial partners, opens up solution paths for industrial implementation.

Under the headline "Walk4Recycling", a tour of the fair shows the cycle of used textiles from used knitwear into a new knitted pullover via a ring yarn made from a blend of 65 percent recycled cotton and 35 percent virgin polyester. The key innovation here is the high proportion of recycled fibres from post-consumer textiles for a ring yarn of this fineness. Today, mainly coarse rotor yarns for low-quality textiles are spun from these materials. The industrial partners participating in the Walk4Recycling are partners of the Recycling Atelier and contribute with their technologies to the fact that fibre material from old clothes can be processed in various process stages into a yarn of new value and high-quality ready-made garments.

The Walk4Recycling offers visitors the opportunity to experience a complete recycling cycle with the numerous process stages from tearing the old textiles, preparing and spinning the fibres and knitting a new jumper live during the fair. Get detailed information on the mechanical recycling of clothing via QR code, website and flyer about the participating exhibitors and their machines and technologies. A short movie will give you additional insights into the various processes involved in the production of the jumper.

Philipp Köhler folgt auf Dr. Frank Meister TITK - Thüringisches Institut für Textil- und Kunststoff-Forschung e.V.
03.05.2023

TITK: Philipp Köhler folgt auf Dr. Frank Meister

Die größte Abteilung des Thüringischen Instituts für Textil- und Kunststoff-Forschung Rudolstadt (TITK) hat einen neuen Chef. Zum 30. April 2023 folgte auf Dr. Frank Meister sein bisheriger Stellvertreter Philipp Köhler, der den Bereich Native Polymere und Chemische Forschung und damit ein fast 60-köpfiges Team aus Wissenschaftlern, Technikern und Laboranten übernimmt.

„Dr. Frank Meister hat in seiner langen und bemerkenswerten Laufbahn maßgeblich dazu beigetragen, dass die TITK-Gruppe heute so solide aufgestellt ist und gerade durch die Celluloseforschung weltweit eine hohe Anerkennung als kompetenter und vertrauenswürdiger Forschungspartner genießt. Mit Philipp Köhler setzt nun eine überzeugende und noch dazu sehr sympathische Führungspersönlichkeit die erfolgreiche Arbeit dieser wichtigen Abteilung fort,“ so der geschäftsführende Direktor des TITK, Benjamin Redlingshöfer.

Die größte Abteilung des Thüringischen Instituts für Textil- und Kunststoff-Forschung Rudolstadt (TITK) hat einen neuen Chef. Zum 30. April 2023 folgte auf Dr. Frank Meister sein bisheriger Stellvertreter Philipp Köhler, der den Bereich Native Polymere und Chemische Forschung und damit ein fast 60-köpfiges Team aus Wissenschaftlern, Technikern und Laboranten übernimmt.

„Dr. Frank Meister hat in seiner langen und bemerkenswerten Laufbahn maßgeblich dazu beigetragen, dass die TITK-Gruppe heute so solide aufgestellt ist und gerade durch die Celluloseforschung weltweit eine hohe Anerkennung als kompetenter und vertrauenswürdiger Forschungspartner genießt. Mit Philipp Köhler setzt nun eine überzeugende und noch dazu sehr sympathische Führungspersönlichkeit die erfolgreiche Arbeit dieser wichtigen Abteilung fort,“ so der geschäftsführende Direktor des TITK, Benjamin Redlingshöfer.

Als promovierter Polymerchemiker war Dr. Frank Meister zum 1. Juni 1993 von der zentralen Forschung der Leuna-Werke nach Rudolstadt gewechselt. Sein erstes Arbeitsfeld wurde die chemische Modifizierung von Cellulose, um sie direkt, ohne jedes Lösungsmittel verformbar zu machen. Damals hatte das Institut bereits begonnen, die Grundlagen für ein Direktlöseverfahren – das Alleinstellungsmerkmal des TITK – zu legen. In der Folgezeit setzte sich dieser Prozess zur Direktauflösung und Trocken-Nass-Verformung von Cellulose durch. Die daraus erhaltenen Spezialfasern konnten in den kommerziellen Maßstab überführt werden.

Nach drei Jahren wurde Frank Meister stellvertretender Abteilungsleiter, 2001 Chef der Chemischen Forschung am TITK. Meilensteine seiner Laufbahn sind mehr als 50 wissenschaftliche Publikationen, über 30 Patente und mindestens 100 Fachvorträge im In- und Ausland.
Für die Entwicklung des Instituts war die Mitwirkung am Wachstumskern „ALCERU-Hightech“ rund um das patentierte Verfahren zur Herstellung von Cellulose-Funktionsfasern von großer Bedeutung. Die neue Methode zur Direkteinarbeitung unverträglicher flüssiger oder schmelzbarer Substanzen in eine Cellulosefaser brachte dem TITK 2008 auch den Thüringer Forschungspreis.

Das „letzte Highlight“ war für Meister Lyohemp® – die erste Lyocellfaser aus 100 Prozent nicht holzbasiertem Zellstoff. Diese Neuentwicklung auf Grundlage von bisher ungenutzten Hanf-Reststoffen steht beispielhaft für einen Forschungsschwerpunkt am TITK - die Verwendung von alternativen Rohstoffen und Recycling-Materialien.

Bereits seit knapp drei Jahren hat Meister Philipp Köhler auf seine Aufgabe vorbereitet. „Er ist ein exzellenter Wissenschaftler mit sehr genauen Vorstellungen von seiner eigenen Entwicklung. Und er ist mit einer hohen sozialen Kompetenz ausgestattet“, begründet Meister seine Wahl. Philipp Köhler ist mit 33 Jahren einer der jüngsten Abteilungsleiter, die das TITK je hatte.

Dass es darauf ankommt, nicht nur im Hier und Jetzt zu leben, sondern den Blick schon voraus zu richten, ist ein Prinzip, das er unbedingt beibehalten will. „Denn auch nachwachsende Rohstoffe wie Holz sind nur begrenzt verfügbar. Deshalb müssen wir uns schon heute Gedanken machen, was danach als Faserrohstoff dienen könnte.“ Zum Beispiel Proteine oder Bakterien-Zellulose, sagt Köhler. „Da, wo andere suchen, müssen wir schon Lösungen durchdacht und industrietaugliche, anwendbare Prozesse parat haben, die noch dazu nachhaltig und ressourceneffizient sind.“

Der gebürtige Saalfelder kam unmittelbar nach dem Studium der Werkstofftechnik 2014 als „Master of Engineering“ ans TITK. Als wissenschaftlicher Mitarbeiter übernahm er bestehende Projekte und half unter anderem mit, die vorhandenen Produkte mit Funktionsfasern weiter zu verbessern. Aktuell promoviert er bei Professor Chokri Cherif an der TU Dresden zu alternativen Materialien für die Faserherstellung.

More information:
TITK TITK Rudolstadt
Source:

TITK - Thüringisches Institut für Textil- und Kunststoff-Forschung e.V.

03.05.2023

Lenzing: Outlook for 2023

  • Revenue grows to EUR 623.1 mn – fiber sales recovered over the course of the quarter
  • EBITDA and net result for the period down compared with the first quarter of 2022
  • Cost reduction program of more than EUR 70 mn being implemented according to plan
  • Production of TENCEL™ brand modal fibers successfully launched in China
  • Lenzing confirms guidance for 2023

The business performance of the Lenzing Group during the first quarter of 2023 largely reflected market trends. However, after the market environment had deteriorated significantly in the third and fourth quarters of the previous year, signs of recovery emerged during the first quarter in terms of demand as well as raw material and energy costs. Textile fibers recorded moderate but steadily improving demand. Business with fibers for nonwovens and with dissolving wood pulp performed better than expected. Raw material and energy costs were still at an elevated albeit decreasing level.

  • Revenue grows to EUR 623.1 mn – fiber sales recovered over the course of the quarter
  • EBITDA and net result for the period down compared with the first quarter of 2022
  • Cost reduction program of more than EUR 70 mn being implemented according to plan
  • Production of TENCEL™ brand modal fibers successfully launched in China
  • Lenzing confirms guidance for 2023

The business performance of the Lenzing Group during the first quarter of 2023 largely reflected market trends. However, after the market environment had deteriorated significantly in the third and fourth quarters of the previous year, signs of recovery emerged during the first quarter in terms of demand as well as raw material and energy costs. Textile fibers recorded moderate but steadily improving demand. Business with fibers for nonwovens and with dissolving wood pulp performed better than expected. Raw material and energy costs were still at an elevated albeit decreasing level.

Outlook
The war in Ukraine and the more restrictive monetary policy pursued by many central banks in order to combat inflation are expected to continue to influence global economic activity. The IMF warns that risks remain elevated overall and forecasts growth of 2.8 and 3 percent for 2023 and 2024 respectively. The currency environment is expected to remain volatile in the regions relevant to Lenzing.

This market environment continues to weigh on the consumer climate and on sentiment in the industries relevant to Lenzing. However, the outlook has brightened somewhat recently.

Demand picked up tangibly after the Chinese New Year. As a consequence, capacity utilization improved and stocks were further reduced both at viscose producers and at downstream stages of the value chain.

In the trend-setting market for cotton, signs are emerging of a further buildup of stocks in the current 2022/23 crop season. Initial forecasts for 2023/24 anticipate a more balanced relationship between supply and demand.

However, despite signs of recovery in both demand and raw material and energy costs, earnings visibility remains limited overall.

Lenzing is fully on track with the implementation of the reorganization and cost reduction program. These and other measures are aimed at positioning Lenzing in the best possible way for the expected market recovery.

Structurally, Lenzing continues to anticipate growth in demand for environmentally responsible fibers for the textile and clothing industry as well as for the hygiene and medical sectors. As a consequence, Lenzing is very well positioned with its “Better Growth” strategy and plans to continue driving growth with specialty fibers as well as its sustainability goals, including the transformation from a linear to a circular economy model.

The successful implementation of the key projects in Thailand and Brazil as well as the investment projects in China and Indonesia will further strengthen Lenzing’s positioning in this respect.

Taking into account the aforementioned factors and assuming a further market recovery in the current financial year, the Lenzing Group continues to expect EBITDA in a range between EUR 320 mn and EUR 420 mn for 2023.

Source:

Lenzing AG

(c) Hypetex
26.04.2023

Hypetex: Coloured Carbon Fibre Bike Wheels launched at The Cycle Show

The first set of coloured carbon fibre bike wheels made a debut public appearance at The Cycle Show at Alexandra Palace.

Developed in partnership with leading wheel brand Parcours, the Chrono carbon fibre wheels feature a gold finish made of Hypetex’s Zlatan uni-directional material and offer a lighter and higher-performance product than the traditional painted alternative.

Hypetex is a sustainable colouring technology for advanced materials, such as carbon fibre. Born out of Formula 1 racing, its patented paint-replacing process is a key step in advancing the lightweight revolution. Combining water-based eco-resins with a sustainable curing process, Hypetex materials are made with bold, colourful aesthetics as well as technical and cost-saving benefits.

Parcours is a leading wheel brand that offers high-performance, premium wheelsets that employs the latest advancements in aerodynamic technology. The Parcours X Hypetex gold wheels were featured at The Cycle Show in London on a bespoke Handsling A1R0evo, which was nominated for the Jaw Droppers trophy - a competition for the industry’s most striking designs.

The first set of coloured carbon fibre bike wheels made a debut public appearance at The Cycle Show at Alexandra Palace.

Developed in partnership with leading wheel brand Parcours, the Chrono carbon fibre wheels feature a gold finish made of Hypetex’s Zlatan uni-directional material and offer a lighter and higher-performance product than the traditional painted alternative.

Hypetex is a sustainable colouring technology for advanced materials, such as carbon fibre. Born out of Formula 1 racing, its patented paint-replacing process is a key step in advancing the lightweight revolution. Combining water-based eco-resins with a sustainable curing process, Hypetex materials are made with bold, colourful aesthetics as well as technical and cost-saving benefits.

Parcours is a leading wheel brand that offers high-performance, premium wheelsets that employs the latest advancements in aerodynamic technology. The Parcours X Hypetex gold wheels were featured at The Cycle Show in London on a bespoke Handsling A1R0evo, which was nominated for the Jaw Droppers trophy - a competition for the industry’s most striking designs.

Source:

Hypetex

Austauschkomponenten (c) Reifenhäuser
17.04.2023

INDEX 23: Reifenhäuser Enka Tecnica zeigt kosteneffizienten Refurbishment Service

Die auf Spinndüsen und High-End-Mikrokomponenten spezialisierte Business Unit der Reifenhäuser Gruppe Enka Tecnica stellt auf der INDEX 23 in Genf ihre umfangreiche Palette an Austauschkomponenten für Spunbond-, Meltblown- und Composite-Anlagen vor. Der spezialisierte Auftrags-Fertiger bietet wirtschaftliche High-End-Technologie „made in Germany“, die zu 100 Prozent herstellerunabhängig kompatibel mit allen weltweit eingesetzten Anlagen ist.

Vliesstoffhersteller weltweit setzen auf Enka Tecnica Komponenten, um Produkte für anspruchsvolle Anwendungen in der Hygiene, Medizin oder Filtration zu produzieren und damit Zugang zu neuen profitablen Märkten zu erhalten. Von Meltblown- und Spunbond-Spinndüsen über Meltblown-Kassetten bis zu kompletten Meltblown-Werkzeugen mit nachhaltigkeitsoptimiertem Energiekonzept, erhalten die Messebesucher einen detaillierten Einblick. Die Qualität der Düsenspitzen und Kapillaren sichert eine konstante Produktqualität und Präzision, mit der Produzenten Toleranzvorgaben zuverlässig einhalten und gleichzeitig Ausschuss vermeiden.

Die auf Spinndüsen und High-End-Mikrokomponenten spezialisierte Business Unit der Reifenhäuser Gruppe Enka Tecnica stellt auf der INDEX 23 in Genf ihre umfangreiche Palette an Austauschkomponenten für Spunbond-, Meltblown- und Composite-Anlagen vor. Der spezialisierte Auftrags-Fertiger bietet wirtschaftliche High-End-Technologie „made in Germany“, die zu 100 Prozent herstellerunabhängig kompatibel mit allen weltweit eingesetzten Anlagen ist.

Vliesstoffhersteller weltweit setzen auf Enka Tecnica Komponenten, um Produkte für anspruchsvolle Anwendungen in der Hygiene, Medizin oder Filtration zu produzieren und damit Zugang zu neuen profitablen Märkten zu erhalten. Von Meltblown- und Spunbond-Spinndüsen über Meltblown-Kassetten bis zu kompletten Meltblown-Werkzeugen mit nachhaltigkeitsoptimiertem Energiekonzept, erhalten die Messebesucher einen detaillierten Einblick. Die Qualität der Düsenspitzen und Kapillaren sichert eine konstante Produktqualität und Präzision, mit der Produzenten Toleranzvorgaben zuverlässig einhalten und gleichzeitig Ausschuss vermeiden.

„Das Alleinstellungsmerkmal von Enka Tecnica ist der herstellerübergreifende Ansatz. Alle unsere Komponenten werden kundenindividuell gefertigt und sind somit immer hundertprozentig kompatibel zu der jeweiligen Anlage“, erklärt Wilfried Schiffer, Geschäftsführer Reifenhäuser Enka Tecnica.

Mit ihrem Refurbishment-Service zur Aufarbeitung gebrauchter Komponenten bietet Enka Tecnica dabei nicht nur eine kosteneffiziente Alternative zum Neuteil, sondern zudem besonders schnelle Lieferzeiten. Auf dem Messestand wird jeweils eine Meltblown- und eine Spunbond-Düse ausgestellt, die zur Hälfte überarbeitet wurden. Mit Hilfe eines Mikroskops kann vor Ort der Zustand der Kapillarbohrungen vor und nach dem Refurbishment betrachtet werden.

Source:

Reifenhäuser

(c) Reifenhäuser
17.04.2023

Reifenhäuser Reicofil mit neuer Technologie für Vliesstoffe auf der Index 23

Der Hersteller von Nonwoven-Anlagen Reifenhäuser Reicofil – eine Business Unit der Reifenhäuser Gruppe – stellt vom 18. bis 21. April auf der international führenden Vliesstoffmesse INDEX 23 in Genf erstmals seine neue Fertigungsplattform RF5 XHL vor.

Der Zusatz XHL steht für Extra High Loft. RF5 XHL - die Weiterentwicklung der RF5-Technologie - ist auf superweiche und perfekt drapierbare Vliesstoffe für die Hygiene-Industrie ausgerichtet.

„Durch hochgekräuselte Fasern mit reduzierter Fasergröße bieten unsere XHL-Vliesstoffe ein neues Qualitätslevel mit superweichem Griff für daraus hergestellte Vliesstoffprodukte, wie Topsheet oder Backsheet“, erklärt Markus Müller, Vice President Sales & Marketing der Reifenhäuser Gruppe. „Gleichzeitig erzielen wir dank reduziertem Ressourceneinsatz eine enorme Verbesserung des CO2-Fußabdrucks um bis zu 30 Prozent.“

Der Hersteller von Nonwoven-Anlagen Reifenhäuser Reicofil – eine Business Unit der Reifenhäuser Gruppe – stellt vom 18. bis 21. April auf der international führenden Vliesstoffmesse INDEX 23 in Genf erstmals seine neue Fertigungsplattform RF5 XHL vor.

Der Zusatz XHL steht für Extra High Loft. RF5 XHL - die Weiterentwicklung der RF5-Technologie - ist auf superweiche und perfekt drapierbare Vliesstoffe für die Hygiene-Industrie ausgerichtet.

„Durch hochgekräuselte Fasern mit reduzierter Fasergröße bieten unsere XHL-Vliesstoffe ein neues Qualitätslevel mit superweichem Griff für daraus hergestellte Vliesstoffprodukte, wie Topsheet oder Backsheet“, erklärt Markus Müller, Vice President Sales & Marketing der Reifenhäuser Gruppe. „Gleichzeitig erzielen wir dank reduziertem Ressourceneinsatz eine enorme Verbesserung des CO2-Fußabdrucks um bis zu 30 Prozent.“

Die RF5 XHL-Technologie setzt auf das patentierte BiCo-Verfahren. Dabei werden im Spinnvliesverfahren zwei verschiedene Rohstoffe in einer Faser kombiniert, wodurch ein Bimetall-Effekt erzielt wird und die Faser sich optimal kräuselt. So gelingt eine Gewichtsreduzierung von bis zu 25 Prozent bei Fasergrößen von 1,0 Denier. Die Dicke steigt gleichzeitig um bis zu 30 Prozent im Vergleich zu marküblichen modernen Vliesstoffen.

Die neuen RF5-XHL-Linien sind mit besonders energieeffizienten Komponenten für eine ressourcenschonende Vliesstoffproduktion bei hohen Anlagengeschwindigkeiten ausgestattet. Um Produktionsabfälle auf ein Minimum zu reduzieren, bestehen alle Rohstoffe aus Polypropylen (PP), was ein einfaches und effizientes Inline-Recycling ermöglicht. Übliche, nicht sortenreine, Vliesstoffe aus PP/PE oder PET/PE sind dagegen nur schwer zu recyceln. Um den anhaltenden Bedarf nach nachhaltigeren Vliesstoffprodukten zu bedienen, verarbeiten RF5-Anlagen zudem auf Wunsch auch biobasierte Rohstoffe.

Mit dem c.Hub, der neuen Plattform zur Datenvernetzung der Reifenhäuser Gruppe, bietet Reicofil eine Digitalisierungslösung, die gezielt auf die Anforderungen von Vliesstoffproduktionen zugeschnitten ist. Kunden haben die Möglichkeit, die Daten ihrer Reicofil-Anlagen, Peripheriegeräte sowie ERP- und MES-Systeme sicher über die c.Hub Middleware zu vernetzen, zentral zu speichern sowie einfach zu analysieren. Anlagenbetreiber können so die Fertigung überwachen, dokumentieren und datenbasiert die Produktionseffizienz steigern. Gemeinsam mit verschiedenen Software Bundles wird der c.Hub als On-Premise-Lösung angeboten, kann also lokal betrieben werden und bleibt unter der vollen Datenhoheit des Anwenders.

More information:
Reifenhäuser INDEX nonwovens
Source:

Reifenhäuser

Radici's booth at Index Graphic Radici
17.04.2023

RadiciGroup presents high-resistance sustainable nonwovens at Index

  • Spunbond, meltblown and composite structures for new market opportunities

RadiciGroup is participating with its Advanced Textile Solutions business area at Index in Geneva from 18 to 21 April 2023. Among the Group’s products showcased are spunbond and meltblown for different application sectors, such as roofing, construction, automotive, HO.RE.CA. and filtration.

“The key message we are bringing to the fair is sustainability,” noted Enrico Buriani, CEO of the Nonwovens division of RadiciGroup Advanced Textile Solutions. “Those who already know us know that, for many years, the Group has been focused on proposing low environmental impact products and processes where sustainability is scientifically measured or certified by independent third parties. Our company is dedicated to nonwovens, which, by the way, are produced using 100% renewable energy. We have expanded our portfolio of innovative solutions for customers interested in realizing projects with sustainability as an essential requirement.”

  • Spunbond, meltblown and composite structures for new market opportunities

RadiciGroup is participating with its Advanced Textile Solutions business area at Index in Geneva from 18 to 21 April 2023. Among the Group’s products showcased are spunbond and meltblown for different application sectors, such as roofing, construction, automotive, HO.RE.CA. and filtration.

“The key message we are bringing to the fair is sustainability,” noted Enrico Buriani, CEO of the Nonwovens division of RadiciGroup Advanced Textile Solutions. “Those who already know us know that, for many years, the Group has been focused on proposing low environmental impact products and processes where sustainability is scientifically measured or certified by independent third parties. Our company is dedicated to nonwovens, which, by the way, are produced using 100% renewable energy. We have expanded our portfolio of innovative solutions for customers interested in realizing projects with sustainability as an essential requirement.”

Respunsible® is a spunbond brand manufactured from recycled polypropylene. A preliminary Life Cycle Assessment (LCA) study was carried out by RadiciGroup to demonstrate the correlation between the reduction in environmental impact and the percentage increase in recycled material. The final results demonstrate that a variable percentage of from 50 to 70% recycled material leads to a reduction in CO2 emissions of from 30 to 40%, compared to a fabric made of 100% virgin material, without comprising high technical performance.

Additionally, since RadiciGroup has achieved ISCC PLUS certification (International Sustainability and Carbon Certification), it can offer bio, biocircular or circular polypropylene spunbond and meltblown nonwovens, in which the sustainable polypropylene is biomass balanced. This certification signifies traceability along the supply chain and verifies that the certified companies meet high environmental and social standards.

“Since 2020, we have had a technologically advanced meltblown production line,” Mr. Buriani concluded. “This allows us to make composite structures, sold under the brand name Radimelt®. Now our goal is to expand our filtration applications, diversifying and developing new business, for instance vacuum cleaner bags or HVAC (heating, ventilation and air conditioning) system filters, where we can meet the high efficiency and mechanical resistance demanded, thanks to our latest generation technology.”

More information:
nonwovens RadiciGroup INDEX
Source:

Radici Group

Frau am Meer Photo Pixabay
17.04.2023

Kelheim Fibres, Sandler and pelzGROUP develop plastic-free panty liner

Viscose speciality fibre manufacturer Kelheim Fibres, nonwoven producer Sandler, and hygiene product manufacturer pelzGROUP have jointly developed a new panty liner that is plastic-free according to the European Single-Use Plastics Directive (SUPD). This innovative solution is a step towards reducing the amount of plastic in hygiene products – and thus also a contribution to tackling the problem of plastic pollution.

According to a UNEP study on marine litter and microplastics, eight million tons of plastic end up in the oceans every year. A significant portion of this pollution comes from single-use plastic products, including conventional period products such as pads or panty liners.

Viscose speciality fibre manufacturer Kelheim Fibres, nonwoven producer Sandler, and hygiene product manufacturer pelzGROUP have jointly developed a new panty liner that is plastic-free according to the European Single-Use Plastics Directive (SUPD). This innovative solution is a step towards reducing the amount of plastic in hygiene products – and thus also a contribution to tackling the problem of plastic pollution.

According to a UNEP study on marine litter and microplastics, eight million tons of plastic end up in the oceans every year. A significant portion of this pollution comes from single-use plastic products, including conventional period products such as pads or panty liners.

The partnership between the three companies was formed under the Open Innovation principle, which allowed for creative idea exchange and facilitated the development of an innovative product. According to Jessica Zeitler, R&D Specialist at Sandler, “Our collaboration with Kelheim Fibres and pelzGROUP is a great example of how companies can work together to create solutions that benefit both the environment and consumers. We are proud to be part of this project and the opportunities it offers.”

For hygiene product manufacturer pelzGROUP, it is important to combine sustainability and performance to achieve broad acceptance in the market. “Our panty liner meets the strict requirements of the European Single-Use Plastics Directive (SUPD) while also matching the performance of conventional synthetic products. At the same time, our new panty liner has a completely European supply chain. This means short distances and therefore low CO2 emissions, and – especially in times of global disruption – reliability for our customers,” emphasizes Dr. Henning Röttger, Head of Business Development at pelzGROUP.

"Our viscose speciality fibres are an environmentally friendly and high-performance alternative to synthetic materials," says Dominik Mayer, Project Manager Fibre & Application Development at Kelheim Fibres. "They are at the very beginning of the product value chain and yet have an enormous impact on the functionality of the end product. Open innovation allows us to bring all partners in the value chain to the table, to find the best solution together in a very short time and bring it to commercialisation - the collaboration with Sandler and pelzGROUP is an important milestone in our AHP journey."

Source:

Kelheim Fibres GmbH

(c) Kelheim Fibres GmbH
14.04.2023

Kelheim Fibres to present bio-based hygiene solutions at INDEX™23

Absorbent hygiene products such as diapers, sanitary pads, and incontinence products are an integral part of our daily lives. However, most of these products contain synthetic components and contribute to the global plastic waste problem. The search for alternatives is becoming increasingly urgent. The catch is that only innovations that offer the same performance and reliability as conventional products can be successful in the market. After all, no one wants to compromise in such a sensitive area as personal hygiene.

Kelheim Fibres is currently working on various development projects to design fully biobased AHP (absorbent hygiene product) concepts that do not compromise on performance. In this area, the company continues to focus on its wood-based specialty fibres, which the tampon industry has trusted for decades. However, the requirements for AHP products differ, as each layer must fulfil a specific function.

Absorbent hygiene products such as diapers, sanitary pads, and incontinence products are an integral part of our daily lives. However, most of these products contain synthetic components and contribute to the global plastic waste problem. The search for alternatives is becoming increasingly urgent. The catch is that only innovations that offer the same performance and reliability as conventional products can be successful in the market. After all, no one wants to compromise in such a sensitive area as personal hygiene.

Kelheim Fibres is currently working on various development projects to design fully biobased AHP (absorbent hygiene product) concepts that do not compromise on performance. In this area, the company continues to focus on its wood-based specialty fibres, which the tampon industry has trusted for decades. However, the requirements for AHP products differ, as each layer must fulfil a specific function.

To meet these requirements, Kelheim Fibres has developed a range of functionalized specialty fibres, including hydrophobic Olea, trilobal Galaxy®, and the hollow fibre Bramante. These specialty fibres ensure optimal results in every layer of the AHP product.

All of Kelheim's fibres are manufactured from 100% wood pulp derived from certified and sustainably managed forests. They are fully biodegradable - microorganisms in soil and seawater ensure that no residues remain.

A current example of such a partner project is the development of a completely bio-based panty liner with the nonwovens manufacturer Sandler and the hygiene products manufacturer pelzGROUP, which is due to be launched on the market shortly.

In addition to new projects in the field of biobased disposable and reusable solutions, Kelheim will also present its tried and tested fibres at INDEX™23, for example for tampons or flushable wipes.

Source:

Kelheim Fibres GmbH

Foto: ANDRITZ
Novafiber CEO and Head of Production together with ANDRITZ technicians and project manager in front of the newly installed 6-cylinder EXEL line
05.04.2023

Novafiber starts up textile recycling and airlay lines from ANDRITZ

International technology group ANDRITZ has delivered, installed, and commissioned a mechanical textile recycling line and an airlay line at Novafiber’s nonwovens production mill in Palín, Guatemala. Both lines have been successfully operating since December 2022.

The recycling line – the second tearing line ANDRITZ supplied to Novafiber – processes post-industrial textile waste from Central America. The recycled fibers feed the latest ANDRITZ Flexiloft airlay line, which produces nonwoven end-products for the bedding and furniture industries – a true example of a circular textile-to-nonwoven approach. The production process ensures complete material use as a state-of-the-art edge trim recycling system returns any waste directly to the tearing and/or airlay line.

This combination of ANDRITZ tearing and airlay lines allows Novafiber to process large amounts of post-industrial garments, controlling the supply chain from raw material to final product. In addition, it enables energy savings and a reduced carbon footprint due to the reduction of shipments.

International technology group ANDRITZ has delivered, installed, and commissioned a mechanical textile recycling line and an airlay line at Novafiber’s nonwovens production mill in Palín, Guatemala. Both lines have been successfully operating since December 2022.

The recycling line – the second tearing line ANDRITZ supplied to Novafiber – processes post-industrial textile waste from Central America. The recycled fibers feed the latest ANDRITZ Flexiloft airlay line, which produces nonwoven end-products for the bedding and furniture industries – a true example of a circular textile-to-nonwoven approach. The production process ensures complete material use as a state-of-the-art edge trim recycling system returns any waste directly to the tearing and/or airlay line.

This combination of ANDRITZ tearing and airlay lines allows Novafiber to process large amounts of post-industrial garments, controlling the supply chain from raw material to final product. In addition, it enables energy savings and a reduced carbon footprint due to the reduction of shipments.

Based in Palín, Novafiber is a leading company in Guatemala for producing nonwovens from post-industrial textile waste for both the local market and export.

Source:

ANDRITZ AG

02.04.2023

Renewcell: Production development in March 2023

For the period 1 March to 31 March, Renewcell 1 produced approximately 1,150 tonnes of prime quality dissolving pulp (within specification for Circulose®). About 1,300 tonnes were delivered to customers during the period. Total production output at Renewcell 1, including prime quality, was approximately 1,350 tonnes of dissolving pulp during the period.

For the period 1 March to 31 March, Renewcell 1 produced approximately 1,150 tonnes of prime quality dissolving pulp (within specification for Circulose®). About 1,300 tonnes were delivered to customers during the period. Total production output at Renewcell 1, including prime quality, was approximately 1,350 tonnes of dissolving pulp during the period.

More information:
Renewcell fiber production
Source:

Renewcell

(c) ROICA™ by Asahi Kasei
31.03.2023

ROICA™ by Asahi Kasei showcases ROICA™ V550 at Kingpins

ROICA™ by Asahi Kasei joins from April 12th the Kingpins Show, showcasing its latest innovation, the premium & smart stretch yarn ROICA™ V550.

ROICA™ V550 is a Cradle to Cradle-Certified™ sustainable degradable stretch yarn with a Material Health Gold Level Certificate. It degrades under ISO 14855-1 tested by OWS decomposing to CO2 and water.

The new responsible and innovative solution partners with denim companies, such as Artistic Milliners, Candiani Denim and Prosperity. They all have adopted the eco-high-tech yarn into their collections and showcase them at Kingpins.

ROICA™ by Asahi Kasei joins from April 12th the Kingpins Show, showcasing its latest innovation, the premium & smart stretch yarn ROICA™ V550.

ROICA™ V550 is a Cradle to Cradle-Certified™ sustainable degradable stretch yarn with a Material Health Gold Level Certificate. It degrades under ISO 14855-1 tested by OWS decomposing to CO2 and water.

The new responsible and innovative solution partners with denim companies, such as Artistic Milliners, Candiani Denim and Prosperity. They all have adopted the eco-high-tech yarn into their collections and showcase them at Kingpins.

Source:

ROICA™ by Asahi Kasei

(c) DNFI
31.03.2023

Apllications open for DNFI Innovation in Natural Fibres Award 2023

For the seventh time since 2017, the Discover National Fibre Initiative is inviting entries for the ‘DNFI Innovation in Natural Fibres Award’. The purpose of the DNFI Innovation in Natural Fibres Award is to raise awareness of exciting work involving natural fibres, and to help raise the profiles of leading researchers so as to enhance opportunities for commercial application of such work.

The DNFI Award 2023 will be judged in three categories: Innovative products/components or applications, innovative processes/procedures, research and science.
The evaluation criteria are: outstanding scientific work and technical feasibility, the extent of improvement or effectiveness of the innovation compared to existing products or processes in which the innovative product or process has been implemented and the potential for opening up new markets or sectors for products made from natural fibres.

For the seventh time since 2017, the Discover National Fibre Initiative is inviting entries for the ‘DNFI Innovation in Natural Fibres Award’. The purpose of the DNFI Innovation in Natural Fibres Award is to raise awareness of exciting work involving natural fibres, and to help raise the profiles of leading researchers so as to enhance opportunities for commercial application of such work.

The DNFI Award 2023 will be judged in three categories: Innovative products/components or applications, innovative processes/procedures, research and science.
The evaluation criteria are: outstanding scientific work and technical feasibility, the extent of improvement or effectiveness of the innovation compared to existing products or processes in which the innovative product or process has been implemented and the potential for opening up new markets or sectors for products made from natural fibres.

Candidates for the DNFI Innovation in Natural Fibres Award 2023 are requested to send the application with the appropriate submission form by email.

Closing date for applications is 8 September 2023.

Source:

DNFI - Discover Natural Fibres Initiative

Winding unit for the continuous production of fibre-reinforced thermoplastic pipe profiles (c) ITA. Winding unit for the continuous production of fibre-reinforced thermoplastic pipe profiles
30.03.2023

Composites made by ITA at JEC World 2023

  • Less C02 emissions + sustainable + recyclable

Sustainability first - this is the principle of the Institut für Textiltechnik (ITA) of RWTH Aachen University at JEC World 2023. ITA combines various lightweight construction technologies to reduce C02 and to use renewable and/or recyclable raw materials.

ITA presents innovations in the production of reinforcing fibres and in the textile processing of high-modulus fibres. It also shows the impregnation of high-modulus fibres with thermosetting and thermoplastic matrix systems.  

ITA will be exhibiting in hall 6 together with Textechno, Mönchengladbach, Germany, textile testing equipment and Maruhachi Fukui, Japan, Thermoplastic Composite Material Systems. The Interreg AACOMA project will also be presented at the stand. 

  • Less C02 emissions + sustainable + recyclable

Sustainability first - this is the principle of the Institut für Textiltechnik (ITA) of RWTH Aachen University at JEC World 2023. ITA combines various lightweight construction technologies to reduce C02 and to use renewable and/or recyclable raw materials.

ITA presents innovations in the production of reinforcing fibres and in the textile processing of high-modulus fibres. It also shows the impregnation of high-modulus fibres with thermosetting and thermoplastic matrix systems.  

ITA will be exhibiting in hall 6 together with Textechno, Mönchengladbach, Germany, textile testing equipment and Maruhachi Fukui, Japan, Thermoplastic Composite Material Systems. The Interreg AACOMA project will also be presented at the stand. 

Source:

ITA Institut für Textiltechnik of RWTH Aachen

30.03.2023

Avantium and Kvadrat: Offtake agreement for the development of PEF for interior textiles

Avantium N.V., a leading technology provider in renewable chemistry, announces that it has signed an offtake agreement with Kvadrat A/S, a leader in design innovation, producing quality contemporary textiles and textile related products for architects, designers, and private consumers across the world.

Kvadrat will purchase the 100% plant-based and fully recyclable polymer PEF (polyethylene furanoate) from Avantium’s FDCA (furandicarboxylic acid) Flagship Plant, currently under construction in Delfzijl (the Netherlands) and with commercial production set to start in 2024.

The offtake agreement shall offer Kvadrat the advantage of being first mover in creating PEF-based textiles for both commercial and residential interiors.

Avantium N.V., a leading technology provider in renewable chemistry, announces that it has signed an offtake agreement with Kvadrat A/S, a leader in design innovation, producing quality contemporary textiles and textile related products for architects, designers, and private consumers across the world.

Kvadrat will purchase the 100% plant-based and fully recyclable polymer PEF (polyethylene furanoate) from Avantium’s FDCA (furandicarboxylic acid) Flagship Plant, currently under construction in Delfzijl (the Netherlands) and with commercial production set to start in 2024.

The offtake agreement shall offer Kvadrat the advantage of being first mover in creating PEF-based textiles for both commercial and residential interiors.

More information:
Kvadrat Avantium polymer PEF
Source:

Avantium N.V.

30.03.2023

Sanyou and Renewcell: Viscose fibers made from 100% recycled textiles

On the sidelines of the Intertextile Shanghai fair, the Swedish textile-to-textile recycling innovator Renewcell and the leading Chinese viscose manufacturer Tangshan Sanyou announced the next step in their partnership to make fashion circular that stretches back to 2018.

The two companies’ new shared ambition is to offer manufacturers and brands Circulose® viscose fibers made from 100% recycled textiles in commercial quantities starting in 2024. The collaboration has been facilitated by Ekman Group, Renewcell’s exclusive global trading partner.

“I am very happy to announce this acceleration of our long-standing partnership with Tangshan Sanyou. They were the first commercial producer of Circulose®-based fibers in the world, and the first to commit to sourcing significant volumes from us. Now, they aim to also be the first to commercialize 100% Circulose® content fibers” said Patrik Lundström, CEO of Renewcell, adding "I applaud Tangshan Sanyou’s vision and support to scaling next gen raw materials like Circulose®.”

On the sidelines of the Intertextile Shanghai fair, the Swedish textile-to-textile recycling innovator Renewcell and the leading Chinese viscose manufacturer Tangshan Sanyou announced the next step in their partnership to make fashion circular that stretches back to 2018.

The two companies’ new shared ambition is to offer manufacturers and brands Circulose® viscose fibers made from 100% recycled textiles in commercial quantities starting in 2024. The collaboration has been facilitated by Ekman Group, Renewcell’s exclusive global trading partner.

“I am very happy to announce this acceleration of our long-standing partnership with Tangshan Sanyou. They were the first commercial producer of Circulose®-based fibers in the world, and the first to commit to sourcing significant volumes from us. Now, they aim to also be the first to commercialize 100% Circulose® content fibers” said Patrik Lundström, CEO of Renewcell, adding "I applaud Tangshan Sanyou’s vision and support to scaling next gen raw materials like Circulose®.”

The announcement, which follows the recent start of deliveries of 100% recycled textile Circulose® pulp from Renewcell’s newly opened Renewcell 1 recycling plant, is the result of successful validation of Circulose®’s quality in production at Tangshan Sanyou’s commercial-scale manufacturing lines. Tangshan Sanyou would strive to finish the mission of producing commercial volumes of 50% Circulose® content fibers during 2023 and work towards achieving the delivery of 100% Circulose® content branded viscose fibers to selected fashion brands and manufacturers starting in 2024. The two companies will cooperate to market the fibers globally using Renewcell’s Circulose® ingredient brand name.

Mr. Zhang Dongbin, Executive Vice General Manager of Tangshan Sanyou Chemical Fiber, says, "Through the collaboration with Renewcell, we have achieved to use Circulose® made from recycled cotton in the production of our viscose fibers, which is great beneficial to improving resource utilization efficiency and lowering carbon footprint of the industry. It has brought a huge impact in the sustainable fashion industry. We will continue putting efforts in forming good interaction between consumers, brands and enterprises, convey the concept of circular sustainable fashion, promote the greening of textile industry, and ensure a more sustainable way to ensure the sustainable development of the textile industry. Protecting the global ecological environment by applying sustainable solutions is our common goal."

Source:

Renewcell

Dr Ioana Slabu and Benedict Bauer with the nanomodified stent. Photo Peter Winandy
30.03.2023

Nanomodified polymerstent: Novel technology for tumour therapy

  • Electromagnetically heatable nanomodified stent for the treatment of hollow organ tumours wins second place at the RWTH Innovation Award

Almost every fourth person who dies of cancer has a hollow organ tumour, for example in the bile duct or in the oesophagus. Such a tumour cannot usually be removed surgically. It is only possible to open the hollow organ for a short time using a stent, i.e. a tubeshaped prosthesis. However, the tumour grows back and penetrates the hollow organ through the stent. Ioana Slabu from the Institute of Applied Medical Technology and Benedict Bauer from the Institut für Textiltechnik of RWTH Aachen University have now developed a novel technology for the therapy of hollow organ tumours, which was awarded second place in the RWTH Innovation Award. This involves a polymerstent that contains magnetic nanoparticles. When electromagnetic fields are applied, these nanoparticles lead to a controlled heating of the stent material and thus of the tumour. Because the tumour reacts much more sensitively to heat than healthy tissue, it is destroyed and the hollow organ remains open. Thus, the stent develops a self-cleaning effect.  

  • Electromagnetically heatable nanomodified stent for the treatment of hollow organ tumours wins second place at the RWTH Innovation Award

Almost every fourth person who dies of cancer has a hollow organ tumour, for example in the bile duct or in the oesophagus. Such a tumour cannot usually be removed surgically. It is only possible to open the hollow organ for a short time using a stent, i.e. a tubeshaped prosthesis. However, the tumour grows back and penetrates the hollow organ through the stent. Ioana Slabu from the Institute of Applied Medical Technology and Benedict Bauer from the Institut für Textiltechnik of RWTH Aachen University have now developed a novel technology for the therapy of hollow organ tumours, which was awarded second place in the RWTH Innovation Award. This involves a polymerstent that contains magnetic nanoparticles. When electromagnetic fields are applied, these nanoparticles lead to a controlled heating of the stent material and thus of the tumour. Because the tumour reacts much more sensitively to heat than healthy tissue, it is destroyed and the hollow organ remains open. Thus, the stent develops a self-cleaning effect.  

Ioana Slabu of the AME explains: "Not only can we drastically reduce treatment costs, but above all we can provide relief for millions of patients worldwide.
 
A manufacturing process and proof of concept for magnetic hyperthermia are already in place. This novel technology has a very high development potential because it can also be used for tumours in other parts of the body such as the prostate, stomach, intestine or urinary bladder or for cardiovascular diseases.  

The AiF/IGF project started under the project title "ProNano" funded by BMWK. Now the approval for the follow-up project "ProNano2" has also been received. The approved project is called: "Validation of the innovation potential of heatable stents for heat-induced treatment of cavity tumours" and is funded by BMBF in course of the VIP+ program. With the Clinic for General, Visceral and Transplantation Surgery of the University Hospital Aachen and the Institute for Technology and Innovation Management at RWTH Aachen University, the consortium is enriched by clinical and economic expertise. Every year, RWTH Aachen University honours particularly innovative university projects with the Innovation Award. Professor Malte Brettel, Prorector for Business and Industry, presented the certificates to four outstanding projects as part of RWTHtransparent.

Source:

ITA – Institut für Textiltechnik of RWTH Aachen University