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Microscopic characteristic of biological iron sulfide composites during the generation process and the association with treatment effect on heavy metal wastewater

机译:生物硫化铁复合物生成过程中的微观特征及其与重金属废水处理效果的关系

摘要

Heavy metal pollution is a serious environmental concern worldwide, resulting in both environmental and human harm. Recently, studies have shown that environmental biotechnologies based on sulfate reduction offer a potential for removal of toxic heavy metals. Biological iron sulfide composites are iron sulfide compounds generated in situ by sulfate-reducing bacteria. In this study, microscopic morphological changes during the composites' generation process were studied, and the effect of biological iron sulfide composites in different generation phases on treatment of heavy metal wastewater was investigated to establish the correlation between macro-effect and micro-properties. The results revealed that the generation process of biological iron sulfide composites occurs in three phases: the formation phase, stationary phase, and agglomeration phase. The stationary phase can be divided into a pre-stationary phase and post-stationary phase. It was found that the best treatment time for Cr6(+) is in the pre-stationary phase, while the best treatment time for Cu2(+) and Cd2(+) is in the post-stationary phase. The results of this study further prove the benefits of treatment of heavy metal wastewater using biological sulfide composites and provide theoretical guidance in practical applications.
机译:重金属污染是世界范围内严重的环境问题,导致环境和人身伤害。最近,研究表明,基于硫酸盐还原的环境生物技术提供了去除有毒重金属的潜力。生物硫化铁复合物是由还原硫酸盐的细菌原位产生的硫化铁化合物。本研究研究了复合物生成过程中微观形态的变化,研究了不同生成阶段的生物硫化铁复合物对重金属废水处理的影响,从而建立了宏观效果与微观性能之间的关系。结果表明,生物硫化铁复合材料的生成过程分为三个阶段:形成阶段,固定阶段和团聚阶段。固定阶段可以分为平稳前阶段和平稳后阶段。研究发现,Cr6(+)的最佳处理时间在固定前阶段,而Cu2(+)和Cd2(+)的最佳处理时间在固定后阶段。这项研究的结果进一步证明了使用生物硫化物复合物处理重金属废水的好处,并为实际应用提供了理论指导。

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