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新兴可持续技术在城市固体废物填埋场土壤和地下水修复中的应用——综述。

Emerging sustainable technologies for remediation of soils and groundwater in a municipal solid waste landfill site -- A review.

机构信息

Graduate Research Assistant, Institute of Geotechnical Engineering, College of Civil Engineering and Architecture, MOE Key Laboratory of Soft Soils and Geoenvironmental Engineering, Zhejiang University, China.

Institute of Geotechnical Engineering, College of Civil Engineering and Architecture, Zhejiang University, Hangzhou, China.

出版信息

Chemosphere. 2019 Jul;227:681-702. doi: 10.1016/j.chemosphere.2019.04.053. Epub 2019 Apr 10.

Abstract

Remediation of soils and groundwater in a municipal solid wastes (MSW) landfill site emerges as a global challenge to the living environment on earth with significant market potential. Unlike contaminants in an industry or agricultural site, contaminants from MSW landfills are diverse, primarily consisting of chemical oxygen demand (COD), inorganic matter (ammonia-nitrogen, nitrate-nitrogen, total phosphorus) and heavy metals. This renders new challenges to remediation contaminants of different characters altogether. A status quo of existing technologies, including permeable reactive barriers, electrokinetic remediation, microbial remediation, and injection of either solubilizing agents or micro or nanobubbles were thoroughly reviewed, with an emphasis on removal efficiency based on existing projects at lab, pilot or field scales. A design chart tailored for the remediation of a landfill contaminated site was developed, verified by a few case studies, which supplement the chart. Future trends of technical innovation (such as multi-layer permeable reactive barriers (PRBs)) and challenges (such as flow pattern) were identified.

摘要

在全球范围内,城市固体废物(MSW)垃圾填埋场的土壤和地下水修复成为了对地球居住环境的一项挑战,具有巨大的市场潜力。与工业或农业场地中的污染物不同,MSW 填埋场中的污染物种类繁多,主要包括化学需氧量(COD)、无机物(氨氮、硝氮、总磷)和重金属。这给不同性质的修复污染物带来了新的挑战。本文全面综述了现有的技术,包括渗透性反应屏障、电动修复、微生物修复以及增溶剂或微纳米气泡的注入,重点介绍了基于实验室、中试或现场规模现有项目的去除效率。还开发了一个针对垃圾填埋场污染场地修复的设计图表,并通过一些案例研究进行了验证,补充了该图表。本文还确定了技术创新(如多层渗透性反应屏障(PRB))的未来趋势和挑战(如流动模式)。

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