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首页> 外文期刊>Environmental Science and Pollution Research >Characterization of cadmium biosorption by Exiguobacterium sp isolated from farmland soil near Cu-Pb-Zn mine
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Characterization of cadmium biosorption by Exiguobacterium sp isolated from farmland soil near Cu-Pb-Zn mine

机译:Cu-Pb-Zn矿山附近农田土壤中分离到的Exiguobacterium sp对镉的生物吸附特征

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摘要

Bacteria have the ability to bind heavy metals on their cell wall. Biosorption is a passive and energy-independent mechanism to adsorb heavy metals. The efficiency of heavy metal biosorption can vary depending on several factors such as the growth phase of bacteria, solution pH, and existence of competitive heavy metals. In this study, Exiguobacterium sp. isolated from farmland soil near a mine site were used, and optimal conditions for Cd biosorption in solution were investigated. As bacterial growth progressed, Cd biosorption increased, which is attributed to changes in the structure and composition of the cell wall during bacterial growth. The biosorption process was rapid and was completed within 30 min. Cadmium biosorption was highest at pH 7 due to the dissociation of hydrogen ions and the increase of negative charges with increasing pH. In the mixed metal solution of Cd, Pb, and Zn, the amount of biosorption was in the order of Pb>Cd>Zn while in a single metal solution, the order was Cd >= Pb>Zn. The maximum adsorption capacity for Cd by the isolated bacteria was 15.6 mg/g biomass, which was calculated from the Langmuir isotherm model. Different adsorption efficiencies under various environmental conditions indicate that, to control metal mobility, the conditions for biosorption should be optimized before applying bacteria. The results showed that the isolated bacteria can be used to immobilize metals in metal-contaminated wastewater.
机译:细菌具有结合细胞壁上重金属的能力。生物吸附是一种吸附重金属的被动且独立于能量的机制。重金属生物吸附的效率可能会因多种因素而异,例如细菌的生长阶段,溶液的pH值以及竞争性重金属的存在。在这项研究中,Exiguobacterium sp.。从矿区附近的农田土壤中分离出镉,并研究了溶液中镉生物吸附的最佳条件。随着细菌的生长,Cd的生物吸附增加,这归因于细菌生长过程中细胞壁的结构和组成的变化。生物吸附过程迅速,并在30分钟内完成。由于氢离子的解离以及随着pH值的增加负电荷的增加,镉的生物吸附在pH值为7时最高。在Cd,Pb和Zn的混合金属溶液中,生物吸附量的顺序为Pb> Cd> Zn,而在单金属溶液中,生物吸附量的顺序为Cd> = Pb> Zn。根据Langmuir等温模型计算,分离出的细菌对Cd的最大吸附容量为15.6 mg / g生物量。在各种环境条件下不同的吸附效率表明,要控制金属的迁移率,应在应用细菌之前优化生物吸附条件。结果表明,分离出的细菌可用于固定金属污染废水中的金属。

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