College of Resources and Environment, Yunnan Agricultural University, Kunming, 650201, China.
College of Resources and Environment, Yunnan Agricultural University, Kunming, 650201, China.
Environ Pollut. 2022 Nov 1;312:120094. doi: 10.1016/j.envpol.2022.120094. Epub 2022 Sep 3.
Solidification/stabilization technology is one of the most desirable technologies for the remediation of heavy metal contaminated soils due to its convenience and effectiveness. The annual production of alkaline industrial wastes in China is in the hundreds of millions of tons. Alkaline industrial wastes have the potential to replace conventional stabilizers because of their cost effectiveness and performance in stabilizing heavy metals in soils. This paper systematically summarizes the use of four alkaline industrial wastes (soda residue, steel slag, carbide slag, and red mud) for the solidification/stabilization of heavy metal contaminated soils and provides a comprehensive analysis of the three mechanisms of action (hydration, precipitation, and adsorption) and factors that influence the process. In addition, the environmental risks associated with the use of alkaline industrial wastes are highlighted. We found that soda residues, steel slag and carbide slag are appropriate for solidification/stabilization of Pb, Cd, Zn and Cu, while red mud is a potential passivation agent for the stabilization of As in soils. However, implementation of remediation methods using alkaline industrial wastes has been limited because the long-term effectiveness, synergistic effects, and usage in soils containing multiple heavy metals have not been thoroughly studied. This review provides the latest knowledge on the mechanisms, risks, and challenges of using alkaline industrial wastes for solidification/stabilization of heavy metal contaminated soils.
固化/稳定化技术是修复重金属污染土壤最理想的技术之一,因为它既方便又有效。中国每年产生的碱性工业废物达数亿吨。由于其在稳定土壤重金属方面的成本效益和性能,碱性工业废物有可能替代传统的稳定剂。本文系统总结了四种碱性工业废物(苏打渣、钢渣、电石渣和赤泥)在固化/稳定化重金属污染土壤中的应用,并对三种作用机制(水化、沉淀和吸附)和影响过程的因素进行了全面分析。此外,还强调了碱性工业废物使用带来的环境风险。我们发现,苏打渣、钢渣和电石渣适合于固化/稳定化 Pb、Cd、Zn 和 Cu,而赤泥是稳定土壤中 As 的潜在钝化剂。然而,由于对碱性工业废物修复方法的长期有效性、协同效应以及在含有多种重金属的土壤中的应用还没有进行深入研究,因此其应用受到了限制。本综述提供了有关碱性工业废物用于固化/稳定化重金属污染土壤的最新知识,包括其作用机制、风险和挑战。