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Bio-adsorption and Bio-transformation of Arsenic by Acidithiobacillus ferrooxidans BY3

机译:酸酐铁氧化物By3的生物吸附和生物转化

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Arsenic, a toxic element in the environment, has seriously threatened the health of hundreds of millions of people in the world. Meanwhile, microorganisms play an important role in the adsorption and bio-transformation of arsenic. Here, we compared the biological characteristics of Acidithiobacillus ferrooxidans BY3 in different media systems, such as arsenic bio-adsorption and bio-transformation capacities.We show that arsenic stress significantly affected the pH and Eh of the culture systems, as well as the oxidation rates of Fe~(2+) and bacteria numbers. Furthermore, arsenic influenced bacterial structure and composition of the cell membrane, caused volume decreased and changed the vibration conditions of characteristic peaks of surface groups (-CH_2, -NH, and -OH) on cell membranes. In addition, At.f-BY3 shows high bio-adsorption abilities and certain bio-transformation abilities for iAs~(III). Bio-adsorption and conversion efficiency was also shown to be significantly affected by Fe~(2+) concentrations in the reaction systems. Statistic analysis revealed 10.07-fold increase of the transformation ability of iAs~(III) into iAs~V in the 9 K growth media containing 1600 mg/L NaAsO_2 compared with that in the 1 K growth media. Our findings contribute to understand the applications and microbiological mechanisms of Acidithiobacillus ferrooxidans in arsenic pollution.
机译:砷是环境中有毒的元素,严重威胁到了世界上数亿人的健康。同时,微生物在吸附和生物转化中发挥着重要作用。在这里,我们将酸酐铁氧氮杂物的生物学特性与不同媒体系统中的酸酐毒素的生物学特性进行了比较,例如砷生物吸附和生物转化能力。我们表明砷应力显着影响培养系统的pH和EH,以及氧化率Fe〜(2+)和细菌数量。此外,砷的受影响的细菌结构和细胞膜的组成,导致体积减小,并改变了细胞膜上表面基团(-CH_2,-NH和-OH)的特征峰的振动条件。此外,AT.F-BY3显示了IAS〜(III)的高生物吸附能力和某些生物转化能力。生物吸附和转化效率也显示为反应系统中Fe〜(2+)浓度的显着影响。统计分析显示IAS〜(III)的转化能力增加10.07倍,含有16K生长培养基中的IAS〜V与1K生长培养基相比,含有1600mg / L Naaso_2的9K生长培养基。我们的研究结果有助于了解酸酐铁氧体中砷污染的应用和微生物机制。

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