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Effects of an Integrated Carbide Slag-Mushroom Dreg-Calcium Superphosphate Amendment on the Stabilization Process of Pb, Cu, Zn and Cd in Contaminated Soils

机译:碳化物渣中的含量对污染土壤,Cu,Zn和Cd稳定过程的影响

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摘要

In the present study, the integrated use of organic and inorganic amendments (CS−MD−CSP) including carbide slag (CS), calcium superphosphate (CSP) and mushroom dreg (MD) are employed for the stabilization of heavy metals in contaminated soils. A response surface methodology combined with immobilization efficiency was employed to evaluate and optimize the proportion of the integration amendments on the stabilization process. The results predicted by a Box−Behnken design indicated that the maximum immobilization efficiencies of soil Pb, Cu, Zn and Cd could be achieve up to 99.88, 96.11, 99.78 and 87.88%, respectively, when the dosage of CS, CSP and MD were set as 4, 1 and 6%, respectively. European Community Bureau of Reference (BCR) speciation analysis indicated that the acid-soluble proportion of Pb, Cu, Zn and Cd in the soils decreased by 72.68, 37.03, 9.36 and 12.94%, respectively. Thus, this CS−MD−CSP integration amendment could potentially be used for the remediation of Pb, Cu, Zn and Cd in contaminated soils.
机译:在本研究中,综合使用的有机和无机的修正(CS-MD-CSP)包括碳化物炉渣(CS),过磷酸钙(CSP)和蘑菇渣(MD)被用于重金属污染土壤稳定化。采用反应表面方法与固定效率相结合,评价和优化稳定过程中整合修正的比例。 Box-Behnken设计预测的结果表明,当CS,CSP和MD的剂量为时,分别可以分别达到99.88,96.11,99.78%和87.88%的最大固定效率。分别设定为4,1和6%。欧洲社区参考局(BCR)形态分析表明,土壤中Pb,Cu,Zn和Cd的酸可溶性比例分别减少了72.68,37.03,9.36和12.94%。因此,该CS-MD-CSP整合修正案可能用于修复污染的土壤中的Pb,Cu,Zn和Cd。

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