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实验室污染土壤:建立土壤中不同金属化学形态平衡条件的方法学途径。

Laboratory-polluted soils: a methodological approach to establish equilibrium conditions for different metal chemical forms in soils.

作者信息

Pietrantonio M, Calace N, Petronio B M, Pietroletti M

机构信息

Department of Chemistry, University La Sapienza, p.le A. Moro 5, 00185 Rome, Italy.

出版信息

J Environ Monit. 2003 Jun;5(3):451-4. doi: 10.1039/b210810k.

Abstract

An approach based on the number of extractions performed over time was applied to study the time necessary to attain equilibrium conditions between the different chemical forms present in two natural soils laboratory-loaded with heavy metals (Cu(II), Pb(II), Zn(II)). The influence of some soil parameters, such as pH value, cation exchange capacity and organic matter content, on the equilibrium time was evidenced both by the different nature of the soils and by the treatment of soils with paper mill sludge. Equilibrium conditions were determined by studying the metal partitioning in the soil on a case by case basis. The behaviour of the three metals was not the same, and the conditions of equilibrium among the different chemical forms were the result of the amount of heavy metals added as well as of the nature of the soil.

摘要

采用一种基于随时间进行的提取次数的方法,来研究在实验室中用重金属(铜(II)、铅(II)、锌(II))加载的两种天然土壤中,不同化学形态达到平衡条件所需的时间。土壤的一些参数,如pH值、阳离子交换容量和有机质含量,对平衡时间的影响,既通过土壤的不同性质体现,也通过用造纸厂污泥处理土壤得以证明。通过逐案研究土壤中的金属分配来确定平衡条件。三种金属的行为并不相同,不同化学形态之间的平衡条件是添加的重金属量以及土壤性质的结果。

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