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Modelling the environmental performance of composite products: Benchmark with traditional materials

机译:模拟复合产品的环境绩效:传统材料的基准

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摘要

The environmental performance of consumer products is a major concern for many companies. In this work, an attributional Life Cycle Assessment (LCA) study was performed to identify the Best Practicable Environmental Option of three lighting columns made in alternative materials. These are a glass fibre reinforced polymer composite, and two traditional materials, steel and aluminium. Analysis of an alternative composite lighting column with the same matrix, but reinforced with natural fibres (jute) was also performed. The results showed that the lighting column made of steel has the worst overall environmental profile, although steel production is less energy intensive. The composite lighting column is environmentally preferable due to its extended lifespan and lack of maintenance. The production of the raw material is responsible for most of the impacts in all three cases. The glass fibre production is the main contributor for the overall environmental burden of the composite column. In this case, the results also show that there are environmental advantages in replacing glass fibre for jute fibre.
机译:消费产品的环保性能是许多公司的主要关注点。在这项工作中,进行了一项归因生命周期评估(LCA)研究,以确定由替代材料制成的三个照明柱的最佳可行环境选择。它们是玻璃纤维增​​强的聚合物复合材料,是两种传统材料,即钢和铝。还对具有相同基体但由天然纤维(黄麻)增强的替代复合照明柱进行了分析。结果表明,钢制照明柱的整体环境状况最差,尽管钢的生产能耗较低。复合照明柱由于其使用寿命长和缺乏维护而在环境方面是优选的。在这三种情况下,大部分的影响都是由原材料的生产引起的。玻璃纤维的生产是复合塔整体环境负担的主要贡献者。在这种情况下,结果还表明用玻璃纤维代替黄麻纤维具有环境优势。

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