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Heavy metal stabilization in contaminated soil by treatment with calcined cockle shell

机译:用煅烧蛤壳治疗污染土壤重金属稳定化

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In several previous studies, the efficacy of various liming waste materials on the immobilization of heavy metals has been tested and it was found that soils contaminated with heavy metals can be stabilized using this technique. Since lime (CaO) has been identified as the main phase of calcined cockle shell (CCS), it was hypothesized that CCS could be used as a soil amendment to immobilize heavy metals in soil. However, to date, no studies have been conducted using CCS. In this study, the effectiveness of CCS powder on the immobilization of Cd, Pb, and Zn in mine tailing soilwas evaluated. After 28 days of incubation, the treated soil samples were exposed to weathering (four cycles of freezing-thawing and four cycles of wetting-drying) for 8 days before being subjected to a leaching test. The results of this study revealed that the soil pH increased from 7.5 to 12.2 with the addition of 5% CCS. A similar soil pH was obtained when the soil was amended with 5% pure CaO. By leaching with 0.1 M HCl, extracted Cd, Pb, and Zn were reduced by up to 85, 85, and 91%, respectively. Therefore, CCS is suggested as a low-cost lime-based soil amendment for stabilizing heavy metals in abandoned mining sites.
机译:在以前的几项研究中,已经测试了各种跛行废料对重金属固定化的疗效,并发现使用该技术可以稳定用重金属污染的土壤。由于石灰(CAO)已被鉴定为煅烧鸟壳壳(CCS)的主阶段,假设CCS可以用作土壤修正案以固定土壤中的重金属。然而,迄今为止,没有使用CCS进行研究。在该研究中,CCS粉末对CD,Pb和Zn固定的有效性评估的矿井尾瓦斯。在孵育28天后,经处理的土壤样品暴露于风化(四个循环的冷冻解冻和四个循环的润湿干燥),在进行浸出试验之前8天。该研究的结果表明,土壤pH从7.5%增加到12.2,加入5%CCS。当用5%纯CaO修正土壤时,获得了类似的土壤pH。通过用0.1M HCl浸出,提取的Cd,Pb和Zn分别减少了高达85,85和91%。因此,CCS被认为是一种基于低成本的石灰的土壤修正案,用于稳定废弃的采矿部位中的重金属。

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