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Life Cycle Assessment of Novel Aircraft Interior Panels Made from Renewable or Recyclable Polymers with Natural Fiber Reinforcements and Non-Halogenated Flame Retardants

机译:使用天然纤维增强材料和非卤化阻燃剂的可再生或可回收聚合物制成的新型飞机内饰板的生命周期评估

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摘要

A comprehensive life cycle assessment of panels for aircraft interiors was conducted, including both a conventional glass fiber-reinforced panel and different novel sustainable panels. The conventional panel is made of a glass fiber-reinforced thermoset composite with halogenated flame retardant, whereas the sustainable panels are made of renewable or recyclable polymers, natural fiber reinforcements, and nonhalogenated flame retardants. Four different sustainable panels were investigated: a geopolymer-based panel; a linseed-oil–based biopolymer panel; and two thermoplastic panels, one with polypropylene (PP) and another with polylactic acid (PLA). All of the sustainable panels were developed to fulfil fire resistance requirements and to be lighter than the conventional panels in order to reduce fuel consumption and air pollutant emissions from the aircraft. The environmental impacts associated with energy consumption and air emissions were assessed, as well as other environmental impacts resulting from the extraction and processing of materials, transportation of materials and waste, panel manufacturing, use, maintenance, and end of life (EoL). All the sustainable panels showed better environmental performance than the conventional panel. The overall impacts of the sustainable panels were offset by the environmental benefits in the use stage attributed to weight reduction. One square meter of the novel panels could save to 6,000 kilograms of carbon dioxide equivalents. The break-even point (in months) at which the use of sustainable panels would yield an environmental benefit relative to the impacts arising in production and EoL was as follows: 1.2 for the geopolymer panel; 1.7 for the biopolymer panel; 10.4 for the PLA panel; and 54.5 for the PP panel.
机译:对飞机内饰板进行了全面的生命周期评估,包括传统的玻璃纤维增​​强板和不同的新型可持续发展板。常规面板由具有卤化阻燃剂的玻璃纤维增​​强热固性复合材料制成,而可持续面板由可再生或可循环利用的聚合物,天然纤维增强材料和非卤化阻燃剂制成。研究了四种不同的可持续性小组:基于地质聚合物的小组;亚麻籽油基生物聚合物面板;和两块热塑性塑料板,一块用聚丙烯(PP),另一块用聚乳酸(PLA)。所有可持续面板都是为了满足耐火要求而开发的,并且比常规面板更轻,以减少飞机的油耗和空气污染物排放。评估了与能源消耗和空气排放相关的环境影响,以及由于材料的提取和加工,材料和废物的运输​​,面板的制造,使用,维护和寿命终止(EoL)而产生的其他环境影响。所有可持续面板均显示出比常规面板更好的环境性能。可持续发展小组的总体影响被使用过程中减轻重量所带来的环境效益所抵消。一平方米的新型面板可节省6,000千克二氧化碳当量。相对于生产和EoL产生的影响,可持续面板的收支平衡点(以月为单位)如下:地聚合物面板1.2。 1.7用于生物聚合物面板; 10.4用于PLA面板; PP面板则为54.5。

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