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利用含腐殖酸的海藻酸钙珠粒去除危险固体废物渗滤液中的有毒金属并降低对微毒性分析的毒性。

Removal of toxic metals from leachates from hazardous solid wastes and reduction of toxicity to microtox by the use of calcium alginate beads containing humic acid.

作者信息

Pandey Ashok K, Pandey Shri Dhar, Misra Virendra

机构信息

Ecotoxicology Section, Industrial Toxicology Research Centre, M.G. Marg, Lucknow-226 001, India.

出版信息

Ecotoxicol Environ Saf. 2002 Jun;52(2):92-6. doi: 10.1006/eesa.2002.2144.

Abstract

Improper disposal of hazardous wastes can lead to release of potentially harmful substances through leaching such as heavy metals, which ultimately contaminate soil, sediment surface water, and groundwater through runoff. To remove these toxic metals and avoid any adverse effect on the ecosystem, a novel approach involving calcium alginate (CA) beads containing humic acid (HA) was used. For this, 10% leachates of the waste obtained from two major industrial units with electroplating processess were prepared at neutral pH and analyzed by atomic absorption spectrophotometry (AAS). Both leachates contained Cd, Cu, Cr, Ni, Mn, Fe, and Zn. The concentrations of Ni, Mn, Fe, and Zn in the waste were found to be significant. The leachates analyzed were passed through columns packed with calcium alginate beads with or without humic acid. The concentrations of various metals in beads and in different fractions collected after adsorption were measured. Data recorded indicate that calcium alginate beads containing humic acids are more efficient in removal of all metals in substantial amounts from the two leachates. Along with removal of metals, this process led to considerable detoxification of the leachates as tested by Microtox assay, indicated by earlier protection and higher EC(50). The significance of the results in relation to removal of toxic metals by beads containing humic acid is discussed.

摘要

危险废物的不当处置会导致潜在有害物质通过淋溶释放出来,比如重金属,这些重金属最终会通过径流污染土壤、沉积物、地表水和地下水。为了去除这些有毒金属并避免对生态系统产生任何不利影响,采用了一种涉及含有腐殖酸(HA)的海藻酸钙(CA)珠的新方法。为此,在中性pH条件下制备了从两个采用电镀工艺的主要工业单位获得的废物的10%浸出液,并通过原子吸收分光光度法(AAS)进行分析。两种浸出液都含有镉、铜、铬、镍、锰、铁和锌。发现废物中镍、锰、铁和锌的浓度很高。将分析过的浸出液通过装有含或不含腐殖酸的海藻酸钙珠的柱子。测量了吸附后珠子和收集的不同馏分中各种金属的浓度。记录的数据表明,含有腐殖酸的海藻酸钙珠在从两种浸出液中大量去除所有金属方面更有效。除了去除金属外,通过微毒性试验测试表明,该过程还导致浸出液有相当程度的解毒,表现为较早得到保护和较高的半数有效浓度(EC50)。讨论了这些结果对于含腐殖酸的珠子去除有毒金属的意义。

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