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首页> 外文期刊>Journal of Cleaner Production >The circularity of potential bio-textile production routes: Comparing life cycle impacts of bio-based materials used within the manufacturing of selected leather substitutes
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The circularity of potential bio-textile production routes: Comparing life cycle impacts of bio-based materials used within the manufacturing of selected leather substitutes

机译:潜在的生物纺织生产路线的循环性:比较生物基材料在所选皮革替代品制造中的生命周期影响

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摘要

Nowadays the fashion industry faces increasing pressures to reduce the environmental impacts associated to the production of leather-based fashion products, particularly considering issues regarding public acceptance due to animal welfare standards and due to the toxicity of tanning chemicals. An alternative solution facilitated by the bio-textiles industry is the introduction of vegan and bio-based leather substitutes for the production of shoes, handbags, clothing's and upholstery i.e. on the basis of natural fibres, bio-based polymers, microbial cellulose and fungal mycelium composite products. Nonetheless, also these bio-based leather products cause negative environmental impacts i.e. related to land-use change and intensification, to water use and to energy use in polymer manufacturing. For further impact reduction and designing environmentally most sound solutions, design of leather substitute products should integrate best-practice interventions for increased circularity along the full product life cycles from fibre feedstock provisioning to polymer production and end-of-life recyclability and degradability. This study evaluated the current best practice scenarios for impact reduction when implementing circular design strategies in the production of bio-based fashion materials. Three case studies of alternative leather substitutes were considered, including respectively two sub-scenarios in a comparative Life Cycle Impact Assessment. Results for the aggregated single score using the Environmental footprint approach showed that principles of circularity (e.g. the feedstock type and by-product recovery for fiber and sugar feedstocks) have an influence of 65% between the best and worst performer in mitigating environmental impacts. Furthermore, enhancing the product durability of the leather substitutes against the temporal product replacement benchmark of animal leather would have an influence of 25-70% in mitigating impacts concerning water scarcity and climate change. The most important conclusion of this work is that alternative leather substitutes can contribute to relative environmental advantages in impact reduction in 8-14 impact categories, but only as long as the material substitution is coupled with less frequent product replacement and preferably also low impact coating systems and impregnation agents. (C) 2020 Elsevier Ltd. All rights reserved.
机译:如今,时尚界面临着越来越压力,减少与生产皮革的时装产品相关的环境影响,特别是由于动物福利标准,由于鞣制化学品的毒性,特别考虑了有关公众接受的问题。生物纺织工业促进的替代解决方案是引进素食和生物的皮革替代品,用于生产鞋,手袋,服装和室内装潢,即在天然纤维,生物基聚合物,微生物纤维素和真菌菌丝菌丝体的基础上复合产品。尽管如此,这些基于生物的皮革制品也会导致负面环境影响,即与土地使用变化和强化有关,以供水和用于聚合物制造的能源使用。为了进一步减少和设计环境最具声音解决方案,皮革替代产品的设计应整合最佳实践干预措施,以便沿着纤维原料供应到聚合物生产和寿命最终再次可回收性和降解性的全部产品寿命周期增加。本研究评估了在生产生物的时装材料生产中实施循环设计策略时,对影响的最佳实践情景进行了评价。考虑了三种替代皮革替代品的案例研究,包括比较生命周期影响评估中的两个子场景。使用环境足迹的聚集单分数结果显示,圆形原理(例如,纤维和糖原料的原料类型和副产品回收)在减轻环境影响方面的最佳和最糟糕的表现者之间的影响为65%。此外,加强皮革替代品的产品耐久性,以防止动物皮革的颞份产品替代基准,其影响涉及水资源稀缺和气候变化的缓解影响。这项工作的最重要结论是,替代皮革替代品可以有助于8-14个影响类别的影响减少的相对环境优势,但只要材料取代与较少的产品更换且优选地,也是低冲击涂层系统和浸渍剂。 (c)2020 elestvier有限公司保留所有权利。

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