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首页> 外文期刊>ACS Omega >Immobilization of As(V) in Rhizopus oryzae Investigated by Batch and XAFS Techniques
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Immobilization of As(V) in Rhizopus oryzae Investigated by Batch and XAFS Techniques

机译:分批和XAFS技术研究米根瘤菌中As(V)的固定化

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Arsenic (As) contamination in aqueous solutions has become an increasing public concern due to the immense harm to human health. Herein, bioaccumulation of arsenate (As(V)) by Rhizopus oryzae in aqueous systems was investigated under different environmental conditions, such as different pH’s, ionic strengths, mycelia dosages, mycelia growths, and temperatures. The results showed that As(V) could be bioaccumulated efficiently by R. oryzae , and the maximum bioaccumulation capacity of As(V) in R. oryzae was 52.4 mg/g at T = 299 K, which was much higher than that for other biomaterials under similar conditions. R. oryzae generated a higher content of thiol compounds under As(V) stress to immobilize As(V) from aqueous solutions. X-ray absorption near-edge spectroscopy analysis indicated that As(V) was partly reduced to As(III) with increasing contact time, which increased As(V) bioaccumulation in mycelia. In addition, extended X-ray absorption fine structure analysis showed that the As–S complex played an important role in As(V) immobilization by mycelia. This study provided an in-depth investigation of intracellular As speciation and coordination in R. oryzae on the molecular scale, which was crucial to understand the interaction mechanisms of As(V) with fungi during environmental cleanup.
机译:由于对人体健康的巨大危害,水溶液中的砷(As)污染已引起越来越多的公众关注。本文在不同的环境条件下,例如不同的pH值,离子强度,菌丝体剂量,菌丝体生长和温度下,研究了米根霉在水系统中对砷酸盐(As(V))的生物富集。结果表明,As(V)可以被iR有效地生物积累。稻,以及As(V)在R中的最大生物积累能力。在T = 299 K时,米za为52.4 mg / g,远高于在类似条件下的其他生物材料。 R。米粉在As(V)胁迫下产生较高含量的硫醇化合物,从而从水溶液中固定As(V)。 X射线吸收近边缘光谱分析表明,随着接触时间的增加,As(V)部分还原为As(III),这增加了菌丝中As(V)的生物积累。此外,扩展的X射线吸收精细结构分析表明,As-S络合物在菌丝体固定As(V)中起着重要作用。这项研究提供了深入研究R中细胞内As形态和配位的方法。在分子尺度上研究稻米,这对于了解环境清洁过程中As(V)与真菌的相互作用机制至关重要。

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