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[低分子量有机酸对酸性土壤中外源铜形态的影响]

[Effects of low molecular weight organic acids on speciation of exogenous Cu in an acid soil].

作者信息

Huang Guo-Yong, Fu Qing-Ling, Zhu Jun, Wan Tian-Ying, Hu Hong-Qing

出版信息

Huan Jing Ke Xue. 2014 Aug;35(8):3091-5.

Abstract

In order to ascertain the effect of LMWOA (citric acid, tartaric acid, oxalic acid) on Cu-contaminated soils and to investigate the change of Cu species, a red soil derived from quartz sandstone deposit was added by Cu (copper) in the form of CuSO4 x 5H2O so as to simulate soil Cu pollution, keeping the additional Cu concentrations were 0, 100, 200, 400 mg x kg(-1) respectively. After 9 months, different LMWOA was also added into the simulated soil, keeping the additional LMWOAs in soil were 0, 5, 10, 20 mmol x kg(-1) respectively. After 2 weeks incubation, the modified sequential extraction method on BCR (European Communities Bureau of Reference) was used to evaluate the effects of these LMWOAs on the changes of copper forms in soil. The result showed that the percentage of weak acid dissolved Cu, the most effective form in the soil increased with three organic acids increase in quantity in the simulated polluted soil. And there was a good activation effect on Cu in the soil when organic acid added. Activation effects on Cu increased with concentration of citric acid increasing, but it showed a rise trend before they are basically remained unchanged in the case of tartaric acid and oxalic acid added in the soil. On the contrary, the state of the reduction of copper which was regarded as a complement for effective state decreased with the increased concentration of organic acid in the soil, especially with citric acid. When 20 mmol x kg(-1) oxalic acid and citric acid were added into the soil, the activation effect was the best; whereas for tartaric, the concentration was 10 mmol x kg(-1). In general, the effect on the changes of Cu forms in the soil is citric acid > tartaric acid > oxalic acid.

摘要

为了确定低分子量有机酸(柠檬酸、酒石酸、草酸)对铜污染土壤的影响并研究铜形态的变化,以五水硫酸铜的形式向源自石英砂岩矿床的红壤中添加铜(Cu),以模拟土壤铜污染,使添加的铜浓度分别为0、100、200、400 mg·kg⁻¹。9个月后,再向模拟土壤中添加不同的低分子量有机酸,使土壤中添加的低分子量有机酸分别为0、5、10、20 mmol·kg⁻¹。培养2周后,采用欧洲共同体标准局(BCR)的改进连续提取法评估这些低分子量有机酸对土壤中铜形态变化的影响。结果表明,在模拟污染土壤中,弱酸溶解态铜(土壤中最有效的形态)的比例随三种有机酸添加量的增加而增加。添加有机酸时对土壤中的铜有良好的活化作用。对铜的活化作用随柠檬酸浓度的增加而增强,但在添加酒石酸和草酸的情况下,在基本保持不变之前呈上升趋势。相反,被视为有效态补充的铜的还原态随土壤中有机酸浓度的增加而降低,尤其是柠檬酸。当向土壤中添加20 mmol·kg⁻¹的草酸和柠檬酸时,活化效果最佳;而对于酒石酸,浓度为10 mmol·kg⁻¹时效果最佳。总体而言,对土壤中铜形态变化的影响为柠檬酸>酒石酸>草酸。

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