
ETSS AG
ETSS AG
2 Projects, page 1 of 1
Open Access Mandate for Publications and Research data assignment_turned_in Project2015 - 2019Partners:UNIGE, Technology Strategy Board, Biomax Informatics (Germany), EMPA, Pensoft Publishers (Bulgaria) +53 partnersUNIGE,Technology Strategy Board,Biomax Informatics (Germany),EMPA,Pensoft Publishers (Bulgaria),GU,Biomax Informatics (Germany),AXME,Ca Foscari University of Venice,UL,INSTITUT SYMLOG,ETSS AG,INSTITUT NATIONAL DE L ENVIRONNEMENT ET DES RISQUES INERIS,UOXF,GBP CONSULTING LTD,ETSS AG,RIVM,ETSS AG,EU-VRi,GBP CONSULTING LTD,NERC,APPNPS,WR,WU,APPNPS,PINTURAS HEMPEL SA,EAWAG,INERIS,IUTA,PERKINELMER SVERIGE AB,SLU,EPSRC,University of Aveiro,Plymouth University,AXME,IUTA,Promethean Particles (United Kingdom),Ca Foscari University of Venice,INOTEX,Pensoft Publishers (Bulgaria),TNO,University of Birmingham,VUA,EU-VRi,TNO,FCCCO,PERKINELMER SVERIGE AB,Promethean Particles (United Kingdom),Malvern Panalytical Ltd,INOTEX,PINTURAS HEMPEL SA,University of Vienna,Malvern Panalytical Ltd,LEITAT,EAWAG,FCCCO,Technical University of Liberec,LEITATFunder: European Commission Project Code: 646002Overall Budget: 11,321,100 EURFunder Contribution: 9,954,480 EURConcept: NanoFASE will deliver an integrated Exposure Assessment Framework, including methods, parameter values, model and guidance that will allow Industry to assess the full diversity of industrial nano-enabled products to a standard acceptable in regulatory registrations. Methods to assess how use phases, waste streams and environmental compartments (air, soil, water biota) act as “reactors” in modifying and transporting ENMs will be developed and used to derive parameter values. Our nanospecific models will be integrated with the existing multi-media fate model SimpleBox4Nano for use in EUSES and also develop into a flexible multi-media model for risk assessment at different scales and complexities. Information on release form, transformation and transport processes for product relevant ENMs will allow grouping into Functional Fate Groups according to their “most probable” fate pathways as a contribution to safe-by-design based on fate. Methodology: Inventories of material release forms along the product value chain are established. We then study how released ENMs transform from initial reactive states to modified forms with lower energy states in which nanospecific properties may be lost. Transport studies assess material fluxes within/between compartments. The experimental work underpins models describing ENM transformation and transport. Open access is provided to the models suitable for incorporation into existing exposure assessment tools (e.g. SimpleBox4Nano) and for more detailed assessment. Framework completeness is validated by case studies. Impact: Identified links between ENM material properties and fate outcome (e.g. safe-by-design). Improved representation of nanospecific processes in existing key fate and exposure assessment tools (e.g. SimpleBox4Nano in EUSES). Contribution to standardization. GIS framework to support predictive assessment, catchment and point source management of ENM releases.
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For further information contact us at helpdesk@openaire.eu- TNO,VUA,TNO,NANOCYL SA,CNRS,DTU,ETSS AG,Heriot-Watt University,IOM,CNR,University of Leeds,INIA ,IOM,KI,FHG,University of Bremen,INNO,RWTH,Ca Foscari University of Venice,Malsch TechnoValuation,EMPA,Plymouth University,ETSS AG,COLOROBBIA CONSULTING,ERS,MBN Nanomaterialia (Italy),PLASMACHEM,NRCWE NFA,INNO,Malsch TechnoValuation,Veneto Nanotech (Italy),BASF SE,ETSS AG,BASF SE,RIVM,DLO,THE REACH CENTRE LIMITED,Colorobbia (Italy),PLASTIC COMPONENTS AND MODULES AUTOMOTIVE SPA,MBN Nanomaterialia (Italy),Ca Foscari University of Venice,University of Aveiro,DLO,NRCWE NFA,ERS,NANOCYL SA,Veneto Nanotech (Italy),Colorobbia (Italy),YORDAS LIMITED,University of Vienna,PLASTIC COMPONENTS AND MODULES AUTOMOTIVE SPA,PLASMACHEM,UL,COLOROBBIA CONSULTING,AU,Heriot-Watt UniversityFunder: European Commission Project Code: 604305All Research products
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