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Upcycling of cotton polyester blended textile waste to new man-made cellulose fibers

机译:将棉涤混纺纺织废料升级为新型人造纤维素纤维

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The creation of a circular economy for cellulose based textile waste is supported by the development of an upcycling method for cotton polyester blended waste garments. We present a separation procedure for cotton and polyester using [DBNFI] [OAc], a superbase based ionic liquid, which allows the selective dissolution of the cellulose component. After the removal of PET, the resulting solution could be employed to dry-jet wet spin textile grade cellulose fibers down to the microfiber range (0.75-2.95 dtex) with breaking tenacities (27-48 cN/tex) and elongations (7-9%) comparable to commercial Lyocell fibers made from high-purity dissolving pulp. The treatment time in [DBNH] [OAc] was found to reduce the tensile properties (<52%) and the molar mass distribution (<51%) of PET under certain processing conditions. (C) 2019 The Author(s). Published by Elsevier Ltd.
机译:纤维素聚酯纺织废旧衣服的升级方法的开发为纤维素纤维纺织废旧物的循环经济创造提供了支持。我们提出了一种基于[DBNFI] [OAc]的棉和聚酯分离方法,这是一种基于超碱的离子液体,可选择性溶解纤维素组分。除去PET后,所得溶液可用于以低断裂强度(27-48 cN / tex)和伸长率(7-9)干喷湿纺纺织级纤维素纤维至微纤维范围(0.75-2.95 dtex)。 %)可与由高纯度溶解纸浆制成的商业Lyocell纤维相比。发现在某些加工条件下,[DBNH] [OAc]中的处理时间降低了PET的拉伸性能(<52%)和摩尔质量分布(<51%)。 (C)2019作者。由Elsevier Ltd.发布

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