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首页> 外文期刊>International journal of sustainable engineering >Carbon footprint comparison of sign substrate made from recycled e-waste plastic versus aluminium
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Carbon footprint comparison of sign substrate made from recycled e-waste plastic versus aluminium

机译:再生电子垃圾塑料与铝制标志牌的碳足迹比较

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Two types of sign substrate material used for road signs and road safety markers, one constructed of reclaimed e-waste plastic and the other of the most commonly used aluminium, are compared in the context of life cycle assessment methodology. This paper also compares the different types of tools available, and determines a suitable tool for use in calculating the carbon footprint (CF) of the two types of sign substrate material. An estimate for the CF of each type of sign substrate material is calculated as the carbon dioxide equivalent. After calculating the CF of each type of sign substrate, a sensitivity analysis is conducted. The ultimate aim of the analysis was to indicate which parameters of the substrate manufacturing system have the strongest influence on the CF results in order to find ways for lowering the environmental impact such as climate change potential. The main finding of this study is that blank signs constructed of reclaimed e-waste plastic materials are more attractive in climate change potential than those made of aluminium. Also, this paper documents a quantity assessment method for the climate change potential of using sign substrate material constructed of reclaimed e-waste plastic in roadside applications instead of conventional aluminium.
机译:在生命周期评估方法中,比较了两种用于道路标志和道路安全标记的标志基底材料,一种是回收的电子垃圾塑料,另一种是最常用的铝。本文还比较了可用的不同类型的工具,并确定了一种适用于计算两种标牌基材材料的碳足迹(CF)的工具。计算每种标志基板材料的CF值作为二氧化碳当量。在计算每种类型的标志基板的CF之后,进行灵敏度分析。该分析的最终目的是指出基材制造系统的哪些参数对CF结果的影响最大,以便找到降低环境影响(例如气候变化潜力)的方法。这项研究的主要发现是,用回收的电子垃圾塑料材料制成的空白标牌比铝制成的空白标牌在气候变化潜力方面更具吸引力。此外,本文还介绍了一种使用气候变化潜力的数量评估方法,该方法是在路边应用中使用由回收的电子垃圾塑料制成的标牌基材代替传统的铝。

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