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Analysis of the Importance of Oxides and Clays in Cd Cr Cu Ni Pb and Zn Adsorption and Retention with Regression Trees

机译:回归树分析CdCrCuNiPbZn吸附和保留过程中氧化物和粘土的重要性

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摘要

This study determines the influence of the different soil components and of the cation-exchange capacity on the adsorption and retention of different heavy metals: cadmium, chromium, copper, nickel, lead and zinc. In order to do so, regression models were created through decision trees and the importance of soil components was assessed. Used variables were: humified organic matter, specific cation-exchange capacity, percentages of sand and silt, proportions of Mn, Fe and Al oxides and hematite, and the proportion of quartz, plagioclase and mica, and the proportions of the different clays: kaolinite, vermiculite, gibbsite and chlorite. The most important components in the obtained models were vermiculite and gibbsite, especially for the adsorption of cadmium and zinc, while clays were less relevant. Oxides are less important than clays, especially for the adsorption of chromium and lead and the retention of chromium, copper and lead.
机译:这项研究确定了不同土壤成分和阳离子交换能力对不同重金属(镉,铬,铜,镍,铅和锌)的吸附和保留的影响。为此,通过决策树创建了回归模型,并评估了土壤成分的重要性。使用的变量为:腐殖质有机物,比阳离子交换容量,沙和粉砂的百分比,Mn,Fe和Al氧化物和赤铁矿的比例以及石英,斜长石和云母的比例以及不同粘土(高岭石)的比例,ver石,菱镁矿和亚氯酸盐。在获得的模型中,最重要的成分是ver石和菱镁矿,尤其是对于镉和锌的吸附,而粘土的相关性较小。氧化物不如粘土重要,特别是对于铬和铅的吸附以及铬,铜和铅的保留。

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