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Life cycle assessment of rare earths recovery from waste fluorescent powders - A case study in China

机译:从废荧光粉回收稀土的生命周期评估-以中国为例

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摘要

Life cycle assessment of recycling rare earths from waste fluorescent powders was conducted, including the uncertainty and sensitivity analyses. Three scenarios were set in this study, namely, recycling with/without final disposal and waste fluorescent powders landfill. Recycling with final disposal presented lower environmental burden than that without final disposal due to the significant reduction of direct emissions. The evident impacts from chemicals and energy production stages were considered the main contributors to the overall environmental burden of recycling with final disposal due to their relatively high emissions of particulates matter, sulfur dioxide, heavy metals, and carbon dioxide as well as the use of fossil fuel. Compared with landfills, rare-earth recycling shows the highest environmental benefits because of the substitution of primary rare earths. To relieve the high demand of rare earths and reduce the overall environmental burden, governments are highly recommended to increase recycle rate, create a complete management system, improve energy consumption and wastewater treatment efficiency, and build an adequate recycle standard. (C) 2019 Elsevier Ltd. All rights reserved.
机译:从废荧光粉回收稀土进行了生命周期评估,包括不确定性和敏感性分析。这项研究设定了三种方案,即有/无最终处理和荧光粉废料填埋的回收利用。由于直接排放量的显着减少,采用最终处置方式进行回收处理所产生的环境负担要比不采用最终处置方式时减少。化学品和能源生产阶段产生的明显影响被认为是最终处置过程中整个循环环境负担的主要贡献者,因为它们排放的颗粒物,二氧化硫,重金属和二氧化碳以及化石的使用相对较高。汽油。与垃圾填埋场相比,由于回收了原始稀土,稀土回收显示出最高的环境效益。为了缓解稀土的高需求并减轻总体环境负担,强烈建议政府提高回收率,建立完整的管理体系,提高能耗和废水处理效率,并建立适当的回收标准。 (C)2019 Elsevier Ltd.保留所有权利。

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