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枯草芽孢杆菌 DBM 与土壤矿物质相互作用对 Cu(II)和 Pb(II)吸附的影响。

The effect of interaction between Bacillus subtilis DBM and soil minerals on Cu(II) and Pb(II) adsorption.

机构信息

School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou 510275, China; School of Public Health, Southwest Medical University, Luzhou 646000, China.

School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou 510275, China; Guangdong Provincial Key Laboratory of Environmental Pollution Control and Remediation Technology, Sun Yat-sen University, Guangzhou 510275, China; Guangdong Provincial Engineering Research Center for Heavy Metal Contaminated Soil Remediation, Sun Yat-sen University, Guangzhou 510275, China.

出版信息

J Environ Sci (China). 2019 Apr;78:328-337. doi: 10.1016/j.jes.2018.11.012. Epub 2018 Nov 30.

Abstract

The effects of interaction between Bacillus subtilis DBM and soil minerals on Cu(II) and Pb(II) adsorption were investigated. After combination with DBM, the Cu(II) and Pb(II) adsorption capacities of kaolinite and goethite improved compared with the application of the minerals independently. The modeling results of potentiometric titration data proved that the site concentrations of kaolinite and goethite increased by 80% and 30%, respectively after combination with DBM. However, the involvement of functional groups in the DBM/mineral combinations resulted in lower concentrations of observed sites than the theoretical values and led to the enhancement of desorption rates by NHNO and EDTA-Na. The DBM-mineral complexes might also help to prevent heavy metals from entering DBM cells to improve the survivability of DBM in heavy metal-contaminated environments. During the combination process, the extracellular proteins of DBM provided more binding sites for the minerals to absorb Cu(II) and Pb(II). In particular, an especially stable complexation site was formed between goethite and phosphodiester bonds from EPS to enhance the Pb(II) adsorption capacity. So, we can conclude that the DBM-mineral complexes could improve the Cu(II) and Pb(II) adsorption capacities of minerals and protect DBM in heavy metal-contaminated environments.

摘要

研究了枯草芽孢杆菌 DBM 与土壤矿物质之间的相互作用对 Cu(II)和 Pb(II)吸附的影响。与单独使用矿物质相比,与 DBM 结合后,高岭石和针铁矿对 Cu(II)和 Pb(II)的吸附容量得到了提高。电位滴定数据的建模结果证明,与 DBM 结合后,高岭石和针铁矿的点位浓度分别增加了 80%和 30%。然而,DBM/矿物结合物中官能团的参与导致观察到的点位浓度低于理论值,这导致 NHNO 和 EDTA-Na 的解吸速率增加。DBM-矿物复合物还可能有助于防止重金属进入 DBM 细胞,从而提高 DBM 在重金属污染环境中的生存能力。在结合过程中,DBM 的细胞外蛋白质为矿物质提供了更多的结合位点,以吸附 Cu(II)和 Pb(II)。特别是,在 EPS 中的磷酸二酯键和针铁矿之间形成了一个特别稳定的配合位点,从而增强了 Pb(II)的吸附能力。因此,我们可以得出结论,DBM-矿物复合物可以提高矿物质的 Cu(II)和 Pb(II)吸附容量,并保护 DBM 在重金属污染环境中。

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