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Ex-Site Remediation of Heavy Metals Contaminated Soils Using Natural Alominosilicate Minerals

机译:使用天然亚莫胺硅酸盐矿物质的重金属污染土壤的前现场修复

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The effects of zeolite and pyrophyllite on decreasing heavy metals availability in contaminated soil were evaluated in pot experiments. The zeolite and pyrophyllite materials were added to contaminated soil at four rates i.e. 0, 200, 400 and 600 kg ha~(-1). The available forms of heavy metals from soil samples were extracted using EDTA solution (0.01 mol dm~(-3) C_(10)H_(16)N2O8 and 1 mol dm~(-3) (NH4)2Co3, adjusted to pH 8.6) and their concentrations in the obtained extract were determined using atomic absorption spectrophotometry. Zeolite and pyrophyllite incorporation in soil was found to reduce the availability of heavy metals in soil under experimental conditions. The addition of zeolite was more effective in decreasing Cu and Pb availability, while the pyrophyllite showed a better effect on reducing Mn and Cd availability. These results indicated that addition of these clay minerals could be a suitable technique for reducing heavy metals availability in soils. However, the further research is necessary to confirm this hypothesis across different experimentation and soil ecosystems.
机译:在盆栽实验中,评估了沸石和纤维素LITE对减少污染土壤重金属可用性的影响。以四个速率将沸石和纤维素材料添加到污染的土壤中,即0,200,400和600 kg Ha〜(-1)。使用EDTA溶液(0.01mol DM〜(-3)C_(10)H_(16)N2O8和1mol DM〜(-3)(NH 4)2CO3,用EDTA溶液(0.01mol DM〜(-3)C_(10),调节至pH8.6 )使用原子吸收分光光度法测定所得提取物中的浓度。发现土壤中的沸石和纤维素掺入,以减少实验条件下土壤中重金属的可用性。在降低Cu和Pb可用性时,沸石的加入更有效,而辉光料对降低Mn和Cd可用性表现出更好的效果。这些结果表明,添加这些粘土矿物质可能是减少土壤中重金属可用性的合适技术。然而,进一步的研究是在不同的实验和土壤生态系统上证实这一假设。

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