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文石壳对废水中镉的去除及其他二价阳离子的影响。

Removal of cadmium from wastewaters by aragonite shells and the influence of other divalent cations.

作者信息

Köhler Stephan Jürgen, Cubillas Pablo, Rodríguez-Blanco Juan Diego, Bauer Christoph, Prieto Manuel

机构信息

Institute for Applied Geosciences, Rechbauerstrasse 12, A-801 0 Graz, Austria.

出版信息

Environ Sci Technol. 2007 Jan 1;41(1):112-8. doi: 10.1021/es060756j.

Abstract

The effect of dissolved Zn, Co, Pb, Mg, and Ca on the uptake of cadmium by biogenic aragonite was investigated. Experiments were performed in batch-reactors using metal-cadmium-bearing solutions and shell fragments with diameters in different ranges, the solid/liquid ratio being 10 grams per liter. Different initial concentrations of cadmium and metals (1.0-0.005 mM) were used. Uptake takes place via heterogeneous nucleation of metal-bearing crystallites onto the shell surfaces. Cadmium removal occurs by surface precipitation of otavite. Under the conditions used here, Co and Ca as well as Pb < or = 0.3 mM and Zn < or = 0.3 mM do not have a significant effect on the removal of cadmium. At higher concentrations, Pb and Zn outcompete Cd for the dissolving carbonate ions and thus decrease significantly the Cd removal rates. In contrast, Mg has a slight enhancing effect. Pb and Zn are removed faster than Cd, precipitating as PbCO3, Pb3(CO3)2(OH)2, and Zn5(CO3)2(OH)6. Within 24-72 h, the concentrations of lead, cadmium, and zinc decrease until approximately 0.5 microM, and the presence of aragonite buffers the solution to a pH above 8 avoiding redissolution. The study demonstrates the high effectiveness of biogenic aragonite in removing Cd and other metals from polluted waters.

摘要

研究了溶解的锌、钴、铅、镁和钙对生物源文石吸收镉的影响。实验在间歇式反应器中进行,使用含金属镉的溶液和不同直径范围的贝壳碎片,固液比为每升10克。使用了不同初始浓度的镉和金属(1.0 - 0.005 mM)。吸收通过含金属微晶在贝壳表面的异相成核发生。镉的去除是通过菱镉矿的表面沉淀实现的。在此处使用的条件下,钴和钙以及铅≤0.3 mM和锌≤0.3 mM对镉的去除没有显著影响。在较高浓度下,铅和锌与镉竞争溶解的碳酸根离子,从而显著降低镉的去除率。相比之下,镁有轻微的促进作用。铅和锌比镉去除得更快,以碳酸铅、碱式碳酸铅和碱式碳酸锌的形式沉淀。在24 - 72小时内,铅、镉和锌的浓度降低至约0.5微摩尔/升,文石的存在将溶液缓冲至pH值高于8以避免再溶解。该研究证明了生物源文石从污染水体中去除镉和其他金属的高效性。

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