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金属生产中的全球变暖潜能和总物质需求:通过金属替代识别环境影响的变化。

Global warming potential and total material requirement in metal production: Identification of changes in environmental impact through metal substitution.

机构信息

Department of Mechanical Engineering, College of Science and Engineering, Ritsumeikan University, Shiga, Japan.

Department of Mechanical Engineering, College of Science and Engineering, Ritsumeikan University, Shiga, Japan.

出版信息

Sci Total Environ. 2019 Feb 15;651(Pt 2):1764-1775. doi: 10.1016/j.scitotenv.2018.10.085. Epub 2018 Oct 9.

Abstract

In view of the increasing demand for metal use, it is of significant importance to evaluate the environmental impact of metal production. The global warming potential (GWP) in the process of metal production has often been focused upon as a major indicator for evaluating the burden on the environment. Moreover, the environmental impact and mineral exploitation arising from metal ore mining activities, which generate unavoidable mine wastes and have an impact on the ecological biodiversity, cannot be ignored. The major factors for determining the intensity of resource exploitation being the ore grades and strip ratio, the existing indicators for land use employed in the life cycle assessment (LCA) may not fully cover the criteria of the impact of metal mining on the environmental system. Therefore, this study employs the method of total material requirement (TMR) assessment, involving not only the direct and indirect material inputs but also the hidden flows, which are particularly associated with mine wastes. Firstly, the methodology of computing the TMR in the process of metal production is developed. Next, the relation between the GWP and TMR for 58 metals is assessed and finally, the environmental impact through metal substitutes is evaluated from the perspectives of the GWP and TMR. This analysis could identify some of the aspects overlooked in the previous environmental criteria that were concentrating on greenhouse gas emissions and global warming. The developed algorithm may be useful in identifying appropriate metal substitutes, considering the environmental impact.

摘要

鉴于金属使用需求的不断增加,评估金属生产对环境的影响变得尤为重要。金属生产过程中的全球变暖潜势(GWP)通常被作为评估环境负担的主要指标。此外,金属矿石开采活动所产生的环境影响和矿产开采,会产生不可避免的矿山废物,并对生态生物多样性产生影响,这也不容忽视。矿石品位和剥离比是决定资源开采强度的主要因素,生命周期评估(LCA)中现有的土地利用指标可能无法完全涵盖金属开采对环境系统影响的标准。因此,本研究采用总物质需求(TMR)评估方法,不仅涉及直接和间接物质投入,还涉及与矿山废物特别相关的隐含物质流。首先,开发了金属生产过程中计算 TMR 的方法。其次,评估了 58 种金属的 GWP 与 TMR 的关系,最后,从 GWP 和 TMR 的角度评估了金属替代品的环境影响。这项分析可以发现之前环境标准中一些被忽视的方面,这些标准侧重于温室气体排放和全球变暖。所开发的算法可以在考虑环境影响的情况下,有助于识别合适的金属替代品。

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