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首页> 外文期刊>Integrated environmental assessment and management >Unraveling the Global Warming Mitigation Potential from Recycling Subway‐Related Excavated Soil and Rock in China Via Life Cycle Assessment
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Unraveling the Global Warming Mitigation Potential from Recycling Subway‐Related Excavated Soil and Rock in China Via Life Cycle Assessment

机译:通过生命周期评估解除来自中国回收地铁相关的挖掘土和岩石的全球变暖缓解潜力

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摘要

Many cities across China are investing in subway projects, resulting in much subway construction activity, which has experienced a surge over the past decade. The construction activities inevitably cause a dramatic quantity of subway-related excavated soil and rock (ESR). How to manage it with minimal environmental impact on our urban ecosystem remains an open question. The present study evaluates global warming potential (GWP, expressed by CO2 eq) from different ESR recycling and landfilling scenarios via a life cycle assessment (LCA) model based on primary field investigation combined with the LCA software database. The study results illustrate that recycling ESR can significantly reduce greenhouse gas emissions. In comparison with traditional construction materials, the scenarios found that a cumulative amount of 1.1 to 1.5 million tonnes (Mt) of CO2 eq emissions could have been mitigated by using ESR generated between 2010 and 2018 to produce baking-free bricks and recycled baked brick. Using cost-benefit analysis, potential economic benefits from recycled sand and baking-free bricks are found to reach US$9 million annually. The findings of this study could provide better recycling options for ESR-related stakeholders. It is important to mention that there still is much work to be done before this recycling work can be popularized in China. Integr Environ Assess Manag 2021;00:1-12. (c) 2020 The Authors. Integrated Environmental Assessment and Management published by Wiley Periodicals LLC on behalf of Society of Environmental Toxicology & Chemistry (SETAC)
机译:中国各地的许多城市正在投资地铁项目,导致太大的地铁施工活动,在过去十年中经历过激增。建设活动不可避免地引起剧烈的地铁相关的挖掘土和岩石(ESR)。如何管理其对城市生态系统的最小环境影响仍然是一个开放的问题。本研究通过基于主现场调查的生命周期评估(LCA)模型与LCA软件数据库相结合,从不同的ESR回收和填埋场进行评估来自不同ESR回收和填埋场的全球变暖潜力(CO2 EQ表示)。该研究结果表明,回收ESR可以显着降低温室气体排放。与传统建筑材料相比,该方案发现,通过2010年至2018年之间产生的ESR,可以减轻CO2 EQ排放量的1.1至150万吨(MT)的累积金额,以生产无烘烤的砖块和再生烘焙砖。使用成本效益分析,潜在的回收砂和无烘烤砖的经济效益,每年都会达到900万美元。本研究的结果可以为ESR相关利益攸关方提供更好的回收选项。重要的是要提到在中国回收工作普及之前还有很多工作要做。积分环境评估管理MONM 2021; 00:1-12。 (c)2020作者。综合环境评估和管理由Wiley期刊LLC代表环境毒理学和化学(Setac)

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