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Potential of municipal solid waste paper as raw material for production of cellulose nanofibres

机译:城市固体废纸作为生产纤维素纳米纤维的原料的潜力

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When aiming for higher resource efficiency, greater utilization of waste streams is needed. In this work, waste paper separated from mixed municipal solid waste (MSW) was studied as a potential starting material for the production of cellulose nanofibres (CNFs). The waste paper was treated using three different techniques, namely pulping, flotation and washing, after which it was subjected to an ultrafine grinding process to produce CNFs. The energy consumption of the nanofibrillation and nanofibre morphology, as well as properties of the prepared nanofibers, were analysed. Despite the varying amounts of impurities in the waste fibres, all samples could be fibrillated into nanoscale fibres. The tensile strengths of the CNF networks ranged from 70 to 100 MPa, while the stiffness was 7 GPa; thus, their mechanical strength can be adequate for applications in which high purity is not required. The contact angles of the CNF networks varied depending on the used treatment method: the flotation-treated networks were more hydrophilic (contact angle 52.5) and the washed networks were more hydrophobic (contact angle 72.6). (C) 2018 Elsevier Ltd. All rights reserved.
机译:当追求更高的资源效率时,需要更多地利用废物流。在这项工作中,从混合城市固体废物(MSW)中分离出来的废纸被研究为生产纤维素纳米纤维(CNF)的潜在原料。废纸使用三种不同的技术进行处理,即制浆,浮选和洗涤,然后对其进行超细研磨工艺以生产CNF。分析了纳米原纤化和纳米纤维形态的能量消耗,以及所制备的纳米纤维的性能。尽管废纤维中的杂质含量各不相同,但所有样品都可以原纤化为纳米级纤维。 CNF网络的抗拉强度为70至100 MPa,而刚度为7 GPa。因此,它们的机械强度足以满足不需要高纯度的应用。 CNF网络的接触角随所使用的处理方法而变化:经浮选处理的网络更亲水(接触角52.5),洗涤过的网络更疏水(接触角72.6)。 (C)2018 Elsevier Ltd.保留所有权利。

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