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首页> 外文期刊>Journal of environmental sciences >Adsorption and desorption of Cu2+ on paddy soil aggregates pretreated with different levels of phosphate
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Adsorption and desorption of Cu2+ on paddy soil aggregates pretreated with different levels of phosphate

机译:Cu2 +对水稻土聚集体的吸附和解吸,用不同水平的磷酸盐进行预处理

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摘要

Interactions between anions and cations are important for understanding the behaviors of chemical pollutants and their potential risks in the environment. Here we prepared soil aggregates of a yellow paddy soil from the Taihu Lake region, and investigated the effects of phosphate (P) pretreatment on adsorption-desorption of Cu2+ of soil aggregates, free iron oxyhydrates-removed soil aggregates, goethite, and kaolinite with batch adsorption method. The results showed that Cu2+ adsorption was reduced on the aggregates pretreated with low concentrations of P, and promoted with high concentrations of P, showing a V-shaped change. Compared with the untreated aggregates, the adsorption capacity of Cu2+ was reduced when P application rates were lower than 260, 220, 130 and 110 mg/kg for coarse, clay, silt and fine sand fractions, respectively. On the contrary, the adsorption capacity of Cu2+ was higher on P-pretreated soil aggregates than on the control ones when P application rates were greater than those values. However, the desorption of Cu2+ was enhanced at low levels of P, but suppressed at high levels of P, displaying an inverted V-shaped change over P adsorption. The Cu2+ adsorption by the aggregate particles with and without P pretreatments was well described by the Freundlich equation. Similar results were obtained on P-pretreated goethite. However, such P effects on Cu2+ adsorption-desorption were not observed on kaolinite and free iron oxyhydrates-removed soil aggregates. The present results indicate that goethite is one of the main soil substances responsible for the P-induced promotion and inhibition of Cu2+ adsorption. (C) 2016 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:阴离子和阳离子之间的相互作用对于理解化学污染物的行为及其在环境中的潜在风险非常重要。在这里,我们制备了太湖地区一种黄色水稻土的土壤团聚体,并用间歇吸附法研究了磷酸盐(P)预处理对土壤团聚体、游离氧化铁去除土壤团聚体、针铁矿和高岭石中Cu2+吸附-解吸的影响。结果表明,低浓度P处理的团聚体对Cu2+的吸附降低,高浓度P处理的团聚体对Cu2+的吸附增强,呈现V型变化。与未经处理的团聚体相比,当施磷量分别低于260、220、130和110 mg/kg时,粗粒、粘土、粉粒和细砂组分对Cu2+的吸附能力降低。相反,当施磷量大于这些值时,经磷处理的土壤团聚体对Cu2+的吸附能力高于对照。然而,Cu2+的解吸在低磷水平下增强,但在高磷水平下受到抑制,表现出与磷吸附相反的V形变化。通过Freundlich方程,可以很好地描述有磷预处理和无磷预处理的骨料颗粒对Cu2+的吸附。在P-预处理的针铁矿上也获得了类似的结果。然而,在高岭石上未观察到磷对Cu2+吸附-解吸的影响,游离氧化铁去除了土壤团聚体。结果表明,针铁矿是磷诱导促进和抑制Cu2+吸附的主要土壤物质之一。(C) 2016中国科学院生态环境科学研究中心。由Elsevier B.V.出版。

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