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首页> 外文期刊>Journal of environmental monitoring: JEM >Environmental hazard of cadmium, copper, lead and zinc in metal-contaminated soils remediated by sulfosuccinamate formulation
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Environmental hazard of cadmium, copper, lead and zinc in metal-contaminated soils remediated by sulfosuccinamate formulation

机译:磺基琥珀酸盐配方修复的金属污染土壤中镉,铜,铅和锌的环境危害

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Accumulation of metals in soil at elevated concentrations causes risks to the environmental quality and human health for more than one hundred million people globally. The rate of metal release and the alteration of metal distribution in soil phases after soil washing with a sulfosuccinamate surfactant solution (Aerosol 22) were evaluated for four contaminated soils. Furthermore, a sequential extraction scheme was carried out using selective extractants (HAcO, NH_2OH·HCl, H_2O_2 + NH_4AcO) to evaluate which metal species are extracted by A22 and the alteration in metal distribution upon surfactant-washing. Efficiency of A22 to remove metals varied among soils. The washing treatment released up to 50% of Cd, 40% of Cu, 20% of Pb and 12% of Zn, mainly from the soluble and reducible soil fractions, therefore, greatly reducing the fraction of metals readily available in soil. Metal speciation analysis for the solutions collected upon soil washing with Aerosol 22 further confirmed these results. Copper and lead in solution were mostly present as soluble complexes, while Cd and Zn were present as free ions. Besides, redistribution of metals in soil was observed upon washing. The ratios of Zn strongly retained in the soil matrix and Cd complexed with organic ligands increased. Lead was mobilized to more weakly retained forms, which indicates a high bioavailability of the remaining Pb in soil after washing. Comprehensive knowledge on chemical forms of metals present in soil allows a feasible assessment of the environmental impact of metals for a given scenario, as well as possible alteration of environmental conditions, and a valuable prediction for potential leaching and groundwater contamination.
机译:高浓度土壤中金属的积累对全球超过一亿人口的环境质量和人类健康造成风险。对于四种被污染的土壤,评估了用磺基琥珀酸表面活性剂溶液(气雾剂22)洗涤后土壤相中金属的释放速度和金属分布的变化。此外,使用选择性萃取剂(HAcO,NH_2OH·HCl,H_2O_2 + NH_4AcO)进行了顺序萃取方案,以评估A22萃取了哪些金属种类以及表面活性剂洗涤后金属分布的变化。 A22去除金属的效率因土壤而异。洗涤处理主要从可溶性和可还原的土壤成分中释放高达50%的Cd,40%的Cu,20%的Pb和12%的Zn,因此,大大减少了土壤中易获得的金属成分。用气溶胶22洗涤土壤后收集到的溶液的金属形态分析进一步证实了这些结果。溶液中的铜和铅主要以可溶性络合物的形式存在,而镉和锌以游离离子的形式存在。此外,洗涤后观察到金属在土壤中的重新分布。牢固地保留在土壤基质中的Zn和与有机配体络合的Cd的比例增加。铅被动员为保留程度较弱的形式,这表明洗涤后土壤中剩余的Pb具有很高的生物利用度。对土壤中存在的金属化学形态的全面了解,可以对给定情况下金属对环境的影响进行可行的评估,以及可能改变环境条件,并对潜在的淋溶和地下水污染做出有价值的预测。

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