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Innovative and Sustainable Bio-Polymers for Household and Beauty Care Products. Final results of the EU BIO-MIMETIC Project

机译:家用和美容护理产品的创新性和可持续性生物聚合物。欧盟BIO-MIMETIC项目的最终结果

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Into the charming and historical location of Villa Mondragone with the final report in Unindustria Latina, the EU Research Project BIO-MIMETIC, coordinated by Anju Brooker from P&G, has been closed during a three days meeting from June 23 to 25c.a. The project has received funding from the European Union's Seventh Framework Program (agreement nr 282945) for developing New bio-inspired processes and products from renewable feedstocks, as strategic alternative to fossil fuels. As first result and starting from different biomass sources, the BIO-MIMETIC consortium has been able to obtain homogeneous constant and purified batches of lignin and lignin oligomers. Successively, lignin, as interesting, abundant and renewable source of aromatic groups has been transformed in new bio-polymers and bio-based products by environmentally-friendly enzymatic processes developed within the project, involving the enzymes laccases, oxidases and lipoxygenases. Moreover, it was possible to bind the by-product lignin, obtained from plant biomass, with chitin Nanofibrils, as natural polymer obtained from crustacean waste by a simple and green process. Finally, by the use of these new bio-polymers, household and beauty care consumer bio-products have been realized: an Automatic Dishwashing, a Compact Hard Surface Cleaner, and Anti-aging/Anti-inflammatory Skin Creams and Beauty Masks. In addition a stakeholder's analysis has been performed while a life cycle assessment has explored the environmental sustainability of both the new bio-polymers and the consumer products realized.
机译:在6月23日至25c.a举行的为期三天的会议中,由P&G的Anju Brooker协调的欧盟研究项目BIO-MIMETIC进入了拉蒙国家公园(Laindustria Latina)的最终报告,进入蒙德拉贡别墅(Vill Mondragone)迷人而历史悠久的位置。该项目已获得欧盟第七框架计划(协议号282945)的资助,用于开发可再生原料的新型生物启发工艺和产品,作为化石燃料的战略替代品。作为第一个结果,并且从不同的生物质来源开始,BIO-MIMETIC联盟已经能够获得均质的恒定且纯化的木质素和木质素低聚物批次。木质素作为芳香族基团的一种有趣,丰富和可再生的来源,已通过该项目开发的环境友好型酶促方法转化为新的生物聚合物和生物基产品,涉及的酶包括漆酶,氧化酶和脂氧合酶。此外,可以通过简单而绿色的方法将得自植物生物质的副产物木质素与甲壳素纳米原纤维结合在一起,而得自甲壳类废物的天然聚合物。最后,通过使用这些新的生物聚合物,家庭和美容保健消费生物产品已实现:自动洗碗,紧凑型硬表面清洁剂以及抗衰老/抗炎护肤霜和美容面膜。此外,在进行生命周期评估时,还进行了利益相关者的分析,探索了新型生物聚合物和已实现的消费品在环境方面的可持续性。

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