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A new approach for evaluating the sustainability of raw materials substitution based on embodied energy and the CO2 footprint

机译:一种基于体现的能量和二氧化碳足迹评估原材料替代可持续性的新方法

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The aim of this paper is to propose a simplified method of quantifying the environmental sustainability of raw materials substitution. This method is based on the use of two parameters that account for the energies and emissions involved in the formation of a material. The embodied energy and CO2 footprint are used to define a SUB-RAW index, which is used to compare the environmental performances of selected materials. This method is applied to a real case of stabilized municipal solid waste incineration fly ash using COSMOS (acronym of COlloidal Silica Medium to Obtain Safe inert) technology. The collected COSMOS material can substitute for natural resources (e.g., calcite and talc) as filler in polypropylene composites. This recovered material shows a mean embodied energy of 0.82 MJ/kg and mean CO2 footprint of 0.02 kg/kg. The SUB-RAW index, which is very close to zero when comparing COSMOS and calcite, establishes two materials' equivalence regarding the energies and emissions involved in their production. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文的目的是提出一种简化的方法来量化原材料替代品的环境可持续性。该方法基于两个参数的使用,这两个参数考虑了材料形成过程中涉及的能量和辐射。所体现的能量和二氧化碳足迹用于定义SUB-RAW指数,该指数用于比较所选材料的环境性能。该方法适用于使用COSMOS(为获得安全惰性而使用的硅土介质的缩写)技术稳定化的城市固体废物焚烧飞灰的真实案例。收集的COSMOS材料可以替代天然资源(例如方解石和滑石)作为聚丙烯复合材料的填料。回收的材料显示平均能量为0.82 MJ / kg,平均CO2足迹为0.02 kg / kg。当比较COSMOS和方解石时,SUB-RAW指数非常接近零,该指数确定了两种材料在生产中涉及的能量和排放的等效性。 (C)2017 Elsevier Ltd.保留所有权利。

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