Soil amendments for immobilization of potentially toxic elements in contaminated soils: A critical review

环境修复 生物炭 修正案 土壤改良剂 土壤水分 环境化学 环境科学 堆肥 肥料 土壤污染 土壤有机质 化学 废物管理 污染 土壤科学 农学 生态学 工程类 法学 有机化学 生物 热解 政治学
作者
Kumuduni Niroshika Palansooriya,Sabry M. Shaheen,Season S. Chen,Daniel C.W. Tsang,Yohey Hashimoto,Deyi Hou,Nanthi Bolan,Jörg Rinklebe,Yong Sik Ok
出处
期刊:Environment International [Elsevier BV]
卷期号:134: 105046-105046 被引量:929
标识
DOI:10.1016/j.envint.2019.105046
摘要

Soil contamination by potentially toxic elements (PTEs) has led to adverse environmental impacts. In this review, we discussed remediation of PTEs contaminated soils through immobilization techniques using different soil amendments with respect to type of element, soil, and amendment, immobilization efficiency, underlying mechanisms, and field applicability. Soil amendments such as manure, compost, biochar, clay minerals, phosphate compounds, coal fly ash, and liming materials are widely used as immobilizing agents for PTEs. Among these soil amendments, biochar has attracted increased interest over the past few years because of its promising surface properties. Integrated application of appropriate amendments is also recommended to maximize their use efficiency. These amendments can reduce PTE bioavailability in soils through diverse mechanisms such as precipitation, complexation, redox reactions, ion exchange, and electrostatic interaction. However, soil properties such as soil pH, and clay, sesquioxides and organic matter content, and processes, such as sorption/desorption and redox processes, are the key factors governing the amendments' efficacy for PTEs immobilization in soils. Selecting proper immobilizing agents can yield cost-effective remediation techniques and fulfill green and sustainable remediation principles. Furthermore, long-term stability of immobilized PTE compounds and the environmental impacts and cost effectiveness of the amendments should be considered before application.
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