首页> 外文期刊>Geoderma: An International Journal of Soil Science >The influence of soil properties on the individual and competitive sorption and desorption of Cu and Cd.
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The influence of soil properties on the individual and competitive sorption and desorption of Cu and Cd.

机译:土壤性质对铜和镉个别竞争性吸附和解吸的影响。

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The sorption and retention of mixtures of heavy metals by soil are complex processes that depend on both soil properties and competition between metals for sorption sites. Cu2+ and Cd2+ are among the most potentially toxic heavy metals, they are present - often together - in numerous polluting spills and in agrochemicals. The objective was to evaluate and compare the competitive and individual sorption and desorption capacity and sorption hysteresis of Cu2+ and Cd2+ on four natural soils: a Humic Umbrisol, an Umbric Cambisol, an Endoleptic Luvisol and a Humic Cambisol. To evaluate the sorption and retention capacity, we used the parameter Kr proposed and determined in a previous work. In all the horizons Cu2+ is sorbed and retained to a greater extent than Cd2+. The individual sorption and retention of Cu2+ are most influenced by pH, CECe, and vermiculite, chlorite, and total clay content; however, Cu2+ competitive sorption and retention do not depend on chlorite content. On the other hand, the individual and competitive sorption and retention of Cd2+ are most influenced by pH, CECe and Mn oxides, vermiculite, chlorite, and total clay content. In all the horizons the greatest hysteresis corresponds to Cu2+, and in each soil the hysteresis in the A-horizon is greater than in B, except in the Bt of Endoleptic Luvisol, due to its high pH and vermiculite content. The sorption irreversibility is higher in soils of lower acidity, high levels of oxides and the presence of vermiculite and chlorite in the clay fraction. By multiple linear regression analysis, individual and competitive explanatory models of fixation capacity were obtained. In all equations the most important characteristics that explain the metal fixation are included.
机译:土壤对重金属混合物的吸附和保留是复杂的过程,取决于土壤性质和金属之间对吸附位点的竞争。 Cu 2 + 和Cd 2 + 属于毒性最高的重金属,它们经常(并在一起)存在于许多污染溢出物和农用化学品中。目的是评估和比较Cu 2 + 和Cd 2 + 在四种天然土壤上的竞争性和个体吸附和解吸能力以及吸附滞后:腐殖土, Umbric Cambisol,内窥镜Luvisol和Humic Cambisol。为了评估吸附和保留容量,我们使用了先前工作中提出并确定的参数K r 。在所有视野中,Cu 2 + 的吸附和保留程度均大于Cd 2 + 。 pH,CECe,ver石,绿泥石和总粘土含量对Cu 2 + 的单独吸附和保留影响最大。然而,Cu 2 + 的竞争性吸附和保留并不取决于亚氯酸盐的含量。另一方面,Cd 2 + 的单个和竞争性吸附和保留受pH,CECe和Mn氧化物,ver石,亚氯酸盐和总粘土含量的影响最大。在所有视野中,最大的磁滞对应于Cu 2 + ,并且在每种土壤中,由于内含性Luvisol的Bt高,A-水平的滞后大于B的滞后。和ver石含量。在酸性较低,氧化物含量高以及粘土级分中存在ver石和亚氯酸盐的土壤中,吸附不可逆性较高。通过多元线性回归分析,获得了固定能力的个体和竞争性解释模型。在所有方程式中,都包含了解释金属固定的最重要特征。

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