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首页> 外文期刊>Geomicrobiology journal >Adsorption of copper and cadmium by Cu- and Cd-resistant bacteria and their composites with soil colloids and kaolinite
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Adsorption of copper and cadmium by Cu- and Cd-resistant bacteria and their composites with soil colloids and kaolinite

机译:耐Cu和Cd细菌及其与土壤胶体和高岭石的复合物对铜和镉的吸附

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Remediation of toxic metals by bacteria offers a relatively inexpensive and efficient way for the decontamination of soil and associated environments. The present study was carried out to investigate the surface characteristics, adsorption, and remobilization of Cd and Cu on bacteria and their composites with soil colloidal components, which are the most active constituents in soils. The bacterial strain NTG-01 (Enterobacter aerogenes), which was both Cd- and Cu-resistant, was isolated from a heavily Cu-contaminated soil of the mining area in Daye suburb of Hubei Province, China. Batch laboratory experiments with NTG-01 and soil colloids were performed to quantify adsorption of Cu and Cd. The surface area of kaolinite and the soil colloids from an Alfisol and Ultisol increased by 3.0-8.8% after the introduction of the bacteria. In the presence of bacterial cells, the negative charges of soil colloid systems increased and the positive charges decreased, shifting pH from 4.0 to 6.5. Our results demonstrate that bacteria promote the adsorption of Cd and Cu by kaolinite and soil colloid systems. However, the heavy metals bound by the bacterial composites could also be easily released by NH4NO3 and EDTA. Caution should be taken when using such bacterial strains in bioremediation of heavy metal-contaminated soils.
机译:细菌对有毒金属的修复为土壤和相关环境的净化提供了一种相对便宜且有效的方法。本研究旨在研究Cd和Cu在细菌及其具有土壤胶体成分的复合物中的表面特性,吸附和迁移,而土壤胶体成分是土壤中最活跃的成分。从中国湖北省大冶市郊区矿区重度被铜污染的土壤中分离到了对镉和铜具有抗性的细菌菌株NTG-01(产气肠杆菌)。使用NTG-01和土壤胶体进行批实验室实验,以量化Cu和Cd的吸附。细菌引入后,高岭石的表面积和来自Alfisol和Ultisol的土壤胶体增加了3.0-8.8%。在细菌细胞的存在下,土壤胶体系统的负电荷增加而正电荷减少,pH从4.0变为6.5。我们的结果表明细菌可促进高岭石和土壤胶体系统对Cd和Cu的吸附。但是,细菌复合物结合的重金属也很容易被NH4NO3和EDTA释放。在重金属污染土壤的生物修复中使用此类细菌菌株时应格外小心。

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