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首页> 外文期刊>Communications in Soil Science and Plant Analysis >Differential Sorption Behavior of Cadmium, Lead, Zinc, and Copper in Some Tropical Soils and Their Environmental Implications
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Differential Sorption Behavior of Cadmium, Lead, Zinc, and Copper in Some Tropical Soils and Their Environmental Implications

机译:一些热带土壤中镉,铅,锌和铜的差分吸附行为及其环境影响

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摘要

This study evaluated cadmium (Cd), lead (Pb), zinc (Zn), and copper (Cu) sorption characteristics of three tropical soils. Data obtained conformed to Freundlich sorption model and the S-shaped isotherm curve. Sorption efficiency of Zn and Pb were highest in alkaline soil while slightly acid soil had the highest Cd and Cu sorption efficiency for monometal sorption. In competitive sorption, metals were more sorbed in slightly acid soil while the least efficiency was recorded in acid soil. Distribution coefficient; K-d (average across soil types) in monometal sorption followed the order: Pb > Zn > Cd > Cu. For competitive sorption, the order was Zn > Pb > Cu > Cd. When in competition, Cd was preferentially sorbed in slightly acid and alkaline soils and Zn for acid soil. Conclusively, lead is more in equilibrium solution when in competition with Cd, Zn and Cu making it potential agent of soil and groundwater pollution.
机译:本研究评估了三种热带土壤的镉(Cd),铅(Pb),铅(Pb),锌(Zn)和铜(Cu)吸附特性。 获得的数据符合Freundlich吸附模型和S形等温曲线。 碱性土壤中Zn和Pb的吸附效率最高,而微小酸性土壤具有最高的CD和Cu吸附效率,用于单次吸附。 在竞争性吸附中,金属在略微酸性的土壤中更漂移,而最少的效率被记录在酸性土壤中。 分配系数; 单次吸附中的K-D(平均土壤类型),然后是订单:Pb> Zn> Cd> Cu。 对于竞争吸附,顺序为Zn> Pb> Cu> CD。 在竞争中,CD优先于浅酸和碱性土壤和Zn进行酸性土壤。 结论,在竞争中与CD,Zn和Cu竞争时,铅更具均衡解决方案,使其潜在的土壤和地下水污染。

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