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化工场地绿色修复方案选择:生命周期评价与模糊综合评价集成方法。

Selection of green remediation alternatives for chemical industrial sites: An integrated life cycle assessment and fuzzy synthetic evaluation approach.

机构信息

School of Engineering, The University of British Columbia, Okanagan, 3333 University Way, Kelowna, BC V1V 1V7, Canada.

State Environmental Protection Key Laboratory of Soil Health and Green Remediation, College of Resources and Environment, Huazhong Agricultural University, Wuhan, Hubei 430070, China.

出版信息

Sci Total Environ. 2022 Nov 1;845:157211. doi: 10.1016/j.scitotenv.2022.157211. Epub 2022 Jul 7.

Abstract

The concept of green site remediation calls for a model that can consider environmental impacts in the selection of site remediation alternatives. In this study, an integrated life cycle assessment (LCA)-fuzzy synthetic evaluation (FSE) model is developed to help practitioners select the optimal site remediation plan by incorporating life cycle impacts into the comprehensive suitability evaluation. The LCA module quantifies environmental and economic impacts using ReCiPe and Input-Output LCA methods, respectively. The impacts are evaluated along with other suitability considerations, presented in 32 indicators under ten criteria, by practitioners through a questionnaire survey. FSE is used to process the collected subjective judgments and generate a suitability index for informed selection. The integrated model is applied to a case study of an abandoned chemical industrial site contaminated by various organic chemicals and mercury. Four remediation alternatives, designed as the combined uses of ex-situ thermal desorption, in-situ thermal desorption, and in-situ containment, are evaluated. The LCA results show that the alternative with extensive use (treating 93.8 % of the contaminated soil) of in-situ thermal desorption is associated with the highest environmental and economic impacts, followed by the alternative with less extensive use (6.2 %) of in-situ thermal desorption. The FSE results show that the economic, technical, and environmental impact considerations are the top three important criteria. The integrated LCA-FSE results indicate that the alternative with mixed use of ex-situ thermal desorption and in-situ containment could be the optimal plan. Excluding LCA results could alter the suitability ranks of the alternatives.

摘要

绿色场地修复的概念需要一种模型,该模型可以在选择场地修复替代方案时考虑环境影响。在本研究中,开发了一种集成生命周期评估(LCA)-模糊综合评价(FSE)模型,通过将生命周期影响纳入综合适用性评估,帮助从业者选择最佳的场地修复计划。LCA 模块分别使用 ReCiPe 和投入产出 LCA 方法来量化环境和经济影响。通过问卷调查,从业者对 32 个指标下的 10 个标准中的其他适用性考虑因素进行评估。FSE 用于处理收集到的主观判断,并生成适合知情选择的适用性指数。该集成模型应用于一个受各种有机化学品和汞污染的废弃化工场地案例研究。评估了四个修复替代方案,设计为异位热解吸、原位热解吸和原位封存的组合使用。LCA 结果表明,广泛使用原位热解吸(处理 93.8%的污染土壤)的替代方案与最高的环境和经济影响相关,其次是较少广泛使用原位热解吸(6.2%)的替代方案。FSE 结果表明,经济、技术和环境影响考虑是前三个重要标准。综合 LCA-FSE 结果表明,异位热解吸和原位封存混合使用的替代方案可能是最佳方案。排除 LCA 结果可能会改变替代方案的适用性等级。

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