
Fibroline (France)
Fibroline (France)
3 Projects, page 1 of 1
assignment_turned_in Project2008 - 2012Partners:Fibroline (France), Fricke und Mallah Microwave Technology (Germany), COMFIL APS, PEMU MUANYAGIPARI ZARTKORUEN MUKODORESZVENYTARSASAG, PROMOLDING +9 partnersFibroline (France),Fricke und Mallah Microwave Technology (Germany),COMFIL APS,PEMU MUANYAGIPARI ZARTKORUEN MUKODORESZVENYTARSASAG,PROMOLDING,AIMPLAS,Celstran GmbH,FACT FUTURE ADVANCED COMPOSITES & TECHNOLOGY GMBH,REGLOPLAS AG,AVK-INDUSTRIEVEREINIGUNG VERSTARKTEKUNSTSTOFFE EV,STRUCTOFORM SPRITZGIESSEN ANISOTROPER STRUKTURKOMPONENTEN GMBH,IVW,Polisilk (Spain),NETCOMPOSITES LIMITEDFunder: European Commission Project Code: 214355more_vert assignment_turned_in Project2010 - 2014Partners:VAM-PTECH, Fibroline (France), University of Bristol, Institució dels Centres de Recerca de Catalunya, KUL +18 partnersVAM-PTECH,Fibroline (France),University of Bristol,Institució dels Centres de Recerca de Catalunya,KUL,UPC,University of Sheffield,EUROPEAN AERONAUTIC DEFENCE AND SPACE COMPANY EADS FRANCE SAS,R-Tech,NTUA,Victrex Manu Limited,Polymade ITT,THE CHANCELLOR, MASTERS AND SCHOLARS OF THE UNIVERSITY OF CAMBRIDGE,AIRBUS DEFENCE AND SPACE SAS,BUILDAIR,VOLVO TECHNOLOGY AB,TenCate Advanced Composites,IMMG,BAM,POM TV UG,AVL,NANOZAR SL,CIMNEFunder: European Commission Project Code: 246067more_vert Open Access Mandate for Publications assignment_turned_in Project2017 - 2020Partners:LC INNOCONSULT INTERNATIONAL, ARMINES, Fibroline (France), INSTM, IRIS +10 partnersLC INNOCONSULT INTERNATIONAL,ARMINES,Fibroline (France),INSTM,IRIS,TEXOL SRL,MAVI,Ghent University, Gent, Belgium,EXERGY,Faculty of Technology, Novi Sad,University of Sheffield,UOW,BIOINICIA,University of Novi Sad,EUROPEAN BIOPLASTICS EVFunder: European Commission Project Code: 745839Overall Budget: 4,058,360 EURFunder Contribution: 3,438,050 EURPersonal care, Cosmetic and biomedical industries deal with high-value and/or large volume consumption of polymer-based products which are often derived from fossil sources. Although a number of alternative bio-based polymers is the subject of recent research, more effort is still needed to increase their specific functionalities and performances in order to proceed with their true translation into market. PolyBioSkin aims at developing skin-contact biopolymer-based product parts with increased performance and functionality, such as parts of diapers, cosmetic pads and wound dressings. Indeed, PolyBioSkin will focus on two main classes of bio-based polymers relevant for next generation bio-based industry: biopolyesters (polylactic acid and polyhydroxyalkanoates) because fully renewable, biocompatible and biodegradable and available at an industrial scale, and natural polysaccharides (cellulose/starch and chitin/chitosan), derived from biomass and food waste, for their peculiar properties, such as absorbency and anti-infectivity. Films and textiles will be produced starting from these polymers and their combinations to prove that key products and/or product parts in sanitary, cosmetic and biomedical industry can be effectively translated from a fossil-derived to bio-based polymer production. PolyBioSkin will provide to skin-contact products a much more environmentally friendly end of life than the current accumulation in landfills or incineration, thanks to their biodegradability allowing the organic recycling.
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