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模拟金属与土壤的结合:天然有机物的作用。

Modeling metal binding to soils: the role of natural organic matter.

作者信息

Gustafsson Jon Petter, Pechová Pavlina, Berggren Dan

机构信息

Department of Land and Water Resources Engineering, KTH (Royal Institute of Technology), SE-100 44 Stockholm, Sweden.

出版信息

Environ Sci Technol. 2003 Jun 15;37(12):2767-74. doi: 10.1021/es026249t.

Abstract

The use of mechanistically based models to simulate the solution concentrations of heavy metals in soils is complicated by the presence of different sorbents that may bind metals. In this study, the binding of Zn, Pb, Cu, and Cd by 14 different Swedish soil samples was investigated. For 10 of the soils, it was found that the Stockholm Humic Model (SHM) was able to describe the acid-base characteristics, when using the concentrations of "active" humic substances and Al as fitting parameters. Two additional soils could be modeled when ion exchange to clay was also considered, using a component additivity approach. For dissolved Zn, Cd, Ca, and Mg reasonable model fits were produced when the metal-humic complexation parameters were identical for the 12 soils modeled. However, poor fits were obtained for Pb and Cu in Aquept B horizons. In two of the soil suspensions, the Lund A and Romfartuna Bhs, the calculated speciation agreed well with results obtained by using cation-exchange membranes. The results suggest that organic matter is an important sorbent for metals in many surface horizons of soils in temperate and boreal climates, and the necessity of properly accounting for the competition from Al in simulations of dissolved metal concentrations is stressed.

摘要

使用基于机理的模型来模拟土壤中重金属的溶液浓度因存在可能结合金属的不同吸附剂而变得复杂。在本研究中,对14种不同的瑞典土壤样品对锌、铅、铜和镉的吸附情况进行了研究。对于其中10种土壤,发现当使用“活性”腐殖物质和铝的浓度作为拟合参数时,斯德哥尔摩腐殖质模型(SHM)能够描述其酸碱特性。当采用组分加和法并考虑离子与黏土的交换时,另外两种土壤也能够被建模。对于溶解的锌、镉、钙和镁,当对12种建模土壤的金属 - 腐殖质络合参数相同时,能得到合理的模型拟合结果。然而,在Aquept B层中,铅和铜的拟合效果较差。在两种土壤悬浮液(隆德A和罗姆法尔图纳Bhs)中,计算得到的形态与使用阳离子交换膜获得的结果吻合良好。结果表明,在温带和寒带气候下,土壤许多表层中,有机质是金属的重要吸附剂,并且强调了在模拟溶解金属浓度时适当考虑铝竞争的必要性。

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