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Competitive sorption and desorption of heavy metals by individual soil components

机译:各个土壤组分对重金属的竞争性吸附和解吸

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Knowledge of sorption and desorption of heavy metals by individual soil components should be useful for modelling the behaviour of soils of arbitrary composition when contaminated by heavy metals, and for designing amendments increasing the fixation of heavy metals by soils polluted by these species. In this study the competitive sorption and desorption of Cd, Cr, Cu, Ni, Pb and Zn by humified organic matter, Fe and Mn oxides, kaolinite, vermiculite and mica were investigated. Due to the homogeneity of the sorbents, between-metal competition for binding sites led to their preferences for one or another metal being much more manifest than in the case of whole soils. On the basis of k_(d100) values (distribution coefficients calculated in sorption-desorption experiments in which the initial sorption solution contained 100 mg L~(-1) of each metal), kaolinite and mica preferentially sorbed and retained chromium; vermiculite, copper and zinc; HOM, Fe oxide and Mn oxide, lead (HOM and Mn oxide also sorbed and retained considerable amounts of copper). Mica only retained sorbed chromium, Fe oxide sorbed cadmium and lead, and kaolinite did not retain sorbed copper. The sorbents retaining the greatest proportions of sorbed metals were vermiculite and Mn oxide, but the ratios of k_(d100) values for retention and sorption suggest that cations were least reversibly bound by Mn oxide, and most reversibly by vermiculite.
机译:各个土壤成分对重金属的吸附和解吸的知识应可用于建模受重金属污染的任意成分的土壤的行为,并用于设计修正方法,以增加被这些物种污染的土壤对重金属的固定。在这项研究中,研究了腐殖质有机物,Fe和Mn氧化物,高岭石,ver石和云母对Cd,Cr,Cu,Ni,Pb和Zn的竞争性吸附和解吸。由于吸附剂的均质性,金属间对结合位点的竞争导致它们对一种或另一种金属的偏好比在整个土壤中的表现更为明显。根据k_(d100)值(在吸附-解吸实验中计算的分布系数,其中初始吸附溶液中每种金属含100 mg L〜(-1)),高岭石和云母优先吸附并保留了铬;石,铜和锌; HOM,氧化铁和Mn氧化物,铅(HOM和Mn氧化物也吸附并保留了大量的铜)。云母仅保留吸附的铬,Fe氧化物吸附的镉和铅,高岭石不保留吸附的铜。保留最大比例的吸附金属的吸附剂是ver石和Mn氧化物,但保留和吸附的k_(d100)值之比表明,阳离子被Mn氧化物最少可逆地结合,而由ver石最可逆地结合。

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