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Remediation of Steel Slag on Acidic Soil Contaminated by Heavy Metal

机译:重金属污染的酸性土壤上钢渣的修复

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The technology of in situ immobilization with amendments is an important measure that remediates the soil contaminated by heavy metals, and selecting economical and effective amendments is the key. The effects and mechanism of steel slag, the silicon-rich alkaline byproduct which can remediate acidic soil contaminated by heavy metal, are mainly introduced in this paper to provide theory reference for future research. Firstly, the paper analyzes current research situation of in situ immobilization with amendments. Then, it introduces the main physicochemical properties of steel slag, and the effect on soil pH value as well as heavy metal activity. Besides, the paper elaborates the promoting effect on silicon-requiring plant and the strengthening mechanism for its resistant capability of heavy metal. According to the analysis, the application of steel slag could be a potential valuable strategy to remediate acidic soil contaminated by heavy metal by modifying the transformation of heavy metals in both soil and plant, so that the translocation of heavy metal in food chain is reduced.
机译:改良剂原位固定技术是修复被重金属污染的土壤的重要措施,选择经济有效的改良剂是关键。本文主要介绍了可修复重金属污染的酸性土壤的富硅碱性副产物钢渣的作用机理,为今后的研究提供理论参考。首先,本文分析了修正后原位固定的研究现状。然后介绍了钢渣的主要理化性质,以及对土壤pH值和重金属活性的影响。此外,本文还阐述了对需硅植物的促进作用及其对重金属的抗性增强机制。分析表明,钢渣的应用可能是一种潜在的有价值的策略,可以通过改变土壤和植物中重金属的转化来修复重金属污染的酸性土壤,从而减少食物链中重金属的迁移。

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