阴离子对可变电荷土壤吸附铜离子的影响机理
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国家自然科学基金项目(面上项目,重点项目,重大项目)


Mechanism of anion effect on adsorption of Cu2+ by variable charge soils
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    摘要:

    根据NO3-、Cl-和SO42-对可变电荷土壤和恒电荷土壤吸附Cu2+的影响的比较,探讨了阴离子对可变电荷土壤吸附Cu2+的影响机理。结果表明,当3种阴离子的浓度相同时,在SO42-体系中铁质砖红壤对Cu2+的吸附率较在NO3-和Cl-体系中大得多,而在浓度相同的3种阴离子体系中,黄棕壤对Cu2+的吸附率相差不大。在离子强度相近的NaCl体系中,砖红壤对Cu2+的吸附率相近。在3种阴离子体系中,随着pH升高,砖红壤对Cu2+的吸附率均增大;但在NO3-体系和Cl-体系中Cu2+的吸附率相近;而在SO42-体系中Cu2+的吸附率最大。随着Na2SO4浓度的增大,铁质砖红壤和砖红壤对Cu2+的吸附率减小。但在0.005 mol L-1和0.05 mol L-1 Na2SO4体系中,Cu2+的吸附率大于在不含Na2SO4的体系中者。而在0.5 mol L-1 Na2SO4体系中,Cu2+吸附率小于在不含Na2SO4体系中者。在3种浓度的Na2SO4体系中,黄棕壤对Cu2+的吸附率均小于在不含Na2SO4体系中者。总之,阴离子可通过离子强度、专性吸附和形成离子对影响土壤对Cu2+的吸附。在可变电荷土壤中,阴离子对Cu2+吸附的影响机理较在恒电荷土壤中复杂得多。

    Abstract:

    Based on comparison between the effects of NO3-, Cl- and SO42- on the adsorption of Cu2+ by variable charge and constant charge soils, the mechanism of the anion effect was studied. Results show that when the initial concentrations of NO3-, Cl- and SO42- in the systems studied were identical, the adsorption percentage of Cu2+ by Hyper-Rhodic Ferralsol was larger in the SO42- system than in the NO3- and Cl- systems, while the adsorption percentage of Cu2+ by Cambisol in the three anion systems were very close to each other. The adsorption percentage of Cu2+ by Rhodic Ferralsol in the systems containing different concentrations of NaCl differed insignificantly, suggesting the effect of ionic strength on the adsorption of Cu2+ by variable charge soils was small. The adsorption percentage of Cu2+ by Hyper-Rhodic Ferralsol in the systems containing NO3-, Cl- and SO42- increased with increasing pH of the media. At the same pH value, the percentage in the system containing NO3- was close to that in the system containing Cl-, but lower than that in the system containing SO42-. The adsorption percentage of Cu2+ by Hyper-Rhodic Ferralsol and Rhodic Ferralsol decreased with increasing concentration of Na2SO4. However, the percentages were larger in the systems containing 0.005 mol L-1 and 0.05 mol L-1 Na2SO4, but smaller in the system containing 0.5 mol L-1 Na2SO4 than in the system without Na2SO4. On the other hand, all the adsorption percentages of Cu2+ by Cambisol were smaller in the systems containing different concentrations of Na2SO4 than in the system without Na2SO4. It is, therefore, concluded that kind of anion species can affect the adsorption of Cu2+ by soils through changing the ionic strength of the media, the degree of formation of ion-pairs and the specific adsorption of anions by soils. The mechanism of anion effect on the adsorption of Cu2+ is more complicated in variable charge soils than in constant charge soils.

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邹献中,姜军,赵安珍,季国亮.阴离子对可变电荷土壤吸附铜离子的影响机理[J].土壤学报,2012,49(2):311-318. DOI:10.11766/10.11766/trxb201012010501 Zou Xianzhong, JIANG JUN, ZHAO An-zhen, JI GUOLIANG. Mechanism of anion effect on adsorption of Cu2+ by variable charge soils[J]. Acta Pedologica Sinica,2012,49(2):311-318.

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  • 收稿日期:2010-12-01
  • 最后修改日期:2011-05-09
  • 录用日期:2011-05-09
  • 在线发布日期: 2011-12-15
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