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首页> 外文期刊>Journal of Cleaner Production >Life Cycle Assessment in the minerals industry: Current practice, harmonization efforts, and potential improvement through the integration with process simulation
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Life Cycle Assessment in the minerals industry: Current practice, harmonization efforts, and potential improvement through the integration with process simulation

机译:矿业行业的生命周期评估:目前的实践,协调工作,通过与流程模拟的整合来实现潜在的改进

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摘要

Life Cycle Assessment (LCA) is a widely-used methodology for estimating the potential environmental impacts of technological systems in nature. Relative maturity of this method has been achieved thanks to recent standardization efforts, although there are still several challenges, particularly in the minerals industry where LCA still needs to be strengthened and extended in use. An exhaustive review of recent LCA studies on mining and mineral processing operations was conducted to identify how these have dealt with various methodological challenges. A total of twenty-nine studies were found, most of which focusing on developed regions and in three commodities: coal (28%), aggregates (21%), and copper ores (14%). The source of data for background processes has been the Ecoinvent database in 45% of the studies analyzed, whereas the SimaPro software has been the preferred LCA tool in 66% of such studies. Although important advances have been made, significant issues remain. For instance, inconsistencies were found in the definition of the functional unit and system boundaries (temporal and technological). Further, the adoption of allocation criteria and the use of normalization and weighting in impact assessment have not been considered in most cases. While climate change was the main environmental hotspot (more than 90% of the studies addressed this impact category), the impacts associated with water use and waste management have been overlooked in most studies. Furthermore, mining and processing operations have been described as generic, averaged values or as simple functional relationships between system inputs and outputs using parameters without physical significance ("black box models") in several production chains, making it difficult to identify opportunities for environmental sustainability enhancement within the sector. The work then discusses the opportunity of improvement in LCA in the minerals industry through the incorporation of process simulation from a bottom-up perspective. Evidence from other industries and recent advances in the computational development of such tools for the mineral sector are reviewed, which suggests that there is an opportunity for reducing the epistemic uncertainty in future LCA studies of mining and processing operations through the combination of both approaches. (C) 2019 Elsevier Ltd. All rights reserved.
机译:生命周期评估(LCA)是一种广泛使用的方法,用于估算技术系统本质上的潜在环境影响。由于最近的标准化努​​力,这种方法的相对成熟度已经取得了实现的标准化努​​力,尽管仍有几个挑战,特别是在矿物行业中,LCA仍然需要在使用中仍然需要加强和扩展。对最近的LCA研究进行了详尽的审查,以确定这些挑战各种方法挑战的研究。发现总共有29项研究,其中大部分研究专注于发达地区和三种商品:煤(28%),骨料(21%)和铜矿(14%)。背景过程的数据来源是45%的生态侵入数据库,分析了45%的研究,而SimaPro软件已在66%的此类研究中成为首选的LCA工具。虽然已经进行了重要进展,但仍有重大问题。例如,在功能单元和系统边界的定义中找到不一致性(时间和技术)。此外,在大多数情况下,还没有考虑采用分配标准和影响评估中的归一化和重量的使用。虽然气候变化是主要的环境热点(超过90%的研究涉及这种影响类别),但在大多数研究中都被忽视了与水使用和废物管理相关的影响。此外,在多个生产链中使用参数(“黑匣子型号”)在几种生产链中,挖掘和处理操作被描述为通用,平均值或系统输入和输出之间的简单功能关系,从而难以识别环境可持续性的机会扇区内的增强。然后,该工作通过从自下而上的角度纳入流程模拟,讨论了矿业行业中改善LCA的机会。综述了来自其他行业的证据和最近的矿产工具的计算开发的进步,这表明通过两种方法的组合,有机会降低未来LCA研究的矿业和加工业务的研究。 (c)2019 Elsevier Ltd.保留所有权利。

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