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Influence of a CO2 long term exposure on the mobilisation and speciation of metals in soils

机译:长期暴露于二氧化碳对土壤中金属的迁移和形态的影响

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This study investigates the potential risks associated with high levels and long term exposure of carbon dioxide (CO2) on the mobility and speciation of exchangeable metals in soils. CO2 incubation batch experiments at high pressure and temperature coupled with geochemical modelling were carried out to elucidate the behaviour and mobilisation of metals and the response of soil chemical parameters as a result of long term CO2 exposure. At-Student analysis was performed to ascertain whether differences in the mean concentration of exchangeable metals in soils before and after CO2-incubations are attributable to increase of metal molibilisation because of the long term CO2 exposure. The t-Student revealed the CO2 long term incubation was statistically significant (p <0.05) for the exchangeable concentration of Ni, Zn, and Pb. The CO2-soil incubation induces the acidification of the pore water of soils via CO2 hydrolysis and as a consequence, it increases the exchangeable concentration of Ni, Zn, and Pb in the soils. As, Al, Cr, Cu, and Fe show a different mobilisation pattern depending on the moisture content in soils. Al3+, Fe2+, Cr3+, and Cu2+ as free cations, As as HAsO2, Pb(2+)and PbHCO3-, Zn2+ and ZnHCO3-, are predicted to be the predominant aqueous complexes in the pore water of the incubated soils. (C) 2015 Published by Elsevier GmbH.
机译:这项研究调查了与高水平和长期暴露于二氧化碳(CO2)有关的土壤中可交换金属的迁移性和形态的潜在风险。进行了高温高压下的CO2孵化批处理实验以及地球化学建模,以阐明长期暴露于CO2的金属的行为和迁移以及土壤化学参数的响应。进行了学生分析,以确定由于长期暴露于CO2中,CO2吸附前后土壤中可交换金属的平均浓度差异是否归因于金属溶解增加。这位t-学生发现,对于Ni,Zn和Pb的可交换浓度,CO2长期孵育具有统计学意义(p <0.05)。二氧化碳土壤的温育通过二氧化碳的水解引起土壤孔隙水的酸化,结果增加了土壤中镍,锌和铅的可交换浓度。 As,Al,Cr,Cu和Fe根据土壤中的水分含量表现出不同的迁移模式。作为游离阳离子的Al3 +,Fe2 +,Cr3 +和Cu2 +以及HAsO2,Pb(2+)和PbHCO3-,Zn2 +和ZnHCO3-被认为是温育土壤孔隙水中的主要含水络合物。 (C)2015由Elsevier GmbH发布。

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