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LCA of magnesium production - Technological overview and worldwide estimation of environmental burdens

机译:镁生产的LCA-技术概述和全球环境负担估算

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摘要

Metallic magnesium is mostly used in lightweight alloys, one of the main purposes of which being to decrease fuel consumption in automotive applications. Several different production processes are currently used worldwide, and the magnesium production scenario is changing rapidly, with Chinese production increasingly dominating the world market. For the purpose of this paper, a novel approach to Life Cycle Assessment (LCA) was applied, in which Material Flow Accounting (MFA) and energy-based methods (Embodied Energy, Exergy Analysis and Emergy Synthesis) are integrated and complemented by a detailed description of the environmental hazards associated with emissions from all the different processes. Furthermore, the findings of the assessment are applied to estimate the Global Warming Potential (GWP) and the Acidification Potential (AP) related to the world primary magnesium production in 2007, with an allocation to the producer countries. Results highlight the relevance in terms of environmental impact of the country where the Mg production process takes place, and clearly identify the dominating Chinese Pidgeon process as the least sustainable Mg production chain, despite its growing diffusion: it has the highest environmental burdens as well as material and energy consumption, and the lowest exergy efficiency.
机译:金属镁主要用于轻质合金中,其主要目的之一是减少汽车应用中的燃料消耗。目前全球范围内使用几种不同的生产工艺,镁的生产情景正在迅速变化,中国的生产日益主导世界市场。出于本文的目的,应用了一种新的生命周期评估方法(LCA),在该方法中,材料流核算(MFA)和基于能量的方法(嵌入能量,火用分析和能合成)得到了整合,并辅以详细的方法所有不同过程的排放相关的环境危害的描述。此外,评估结果被用于估算与2007年世界主要镁生产相关的全球变暖潜势(GWP)和酸化潜势(AP),并分配给生产国。结果突出显示了发生镁生产过程的国家在环境影响方面的相关性,并清楚地确定了主导的中国皮江生产过程,尽管其传播范围不断扩大,但它却是可持续性最差的镁生产链:它具有最高的环境负担,而且材料和能源消耗,以及最低的火用效率。

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