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Environmental Impact Assessment of Polylactide(PLA)/Chicken Feathers Biocomposite Materials

机译:聚乳酸/鸡羽毛生物复合材料的环境影响评价

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The aim of this study is to analyse the environmental impacts (EIs) of the process of preparation of new biocomposite materials obtained from polylactide (PLA) and chicken feathers (CFs). Two CFs stabilization methods and different percentages of CFs have been studied. The EIs of these new composites were compared to the impact of virgin PLA. Cradle-to-gate life cycle inventories were assessed for 0-35% v/v of CFs in a CFs/PLA biocomposite. Two CFs stabilization processes, autoclave and surfactant, were tested and compared with the aim to prioritize one of them from the environmental point of view. A composite plate of 184 x 184 x 2.2 mm(3) was defined as the functional unit. Autoclave stabilization process exhibited lower environmental impact compared with surfactant stabilization process mainly due to both the lower requirements of electricity and water and the reduced pollution loads of the generated wastewater. Thus, the autoclave process was selected as the standard method when comparing the EIs of the proposed CFs/PLA biocomposites. In this sense, the addition of CFs to PLA matrix proportionally reduces all the EIs compared to pure PLA due to the replacement of PLA with CFs. This behaviour can be explained because the PLA production accounts for the 99% of the impact of the biocomposite. Consequently, CFs conveniently stabilized might be an alternative raw material to prepare CFs/PLA biocomposites with less environmental impact compared to pure PLA.
机译:这项研究的目的是分析从聚丙交酯(PLA)和鸡毛(CFs)获得的新型生物复合材料制备过程中的环境影响(EIs)。研究了两种CFs稳定方法和不同百分比的CFs。将这些新型复合材料的EI与原始PLA的影响进行了比较。对CFs / PLA生物复合材料中CF的0-35%v / v进行了从摇篮到大门的生命周期清单评估。测试并比较了两种CF稳定化工艺,即高压灭菌器和表面活性剂,目的是从环境角度优先考虑其中一种。 184 x 184 x 2.2 mm(3)的复合板定义为功能单元。与表面活性剂稳定化工艺相比,高压釜稳定化工艺对环境的影响较小,这主要是由于电力和水的需求量降低以及所产生废水的污染负荷降低。因此,在比较拟议的CFs / PLA生物复合材料的EI时,选择了高压灭菌工艺作为标准方法。从这个意义上讲,由于用CF取代了PLA,因此与纯PLA相比,向PLA基质中添加CF会成比例地减少所有EI。可以解释这种行为,因为PLA的生产占生物复合材料影响的99%。因此,与纯PLA相比,方便稳定的CFs可能是制备CFs / PLA生物复合材料的替代原料,对环境的影响较小。

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