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Bioassessment of heavy metal toxicity and enhancement of heavy metal removal by sulfate-reducing bacteria in the presence of zero valent iron

机译:零价铁存在下的重金属毒性生物评估和硫酸盐还原细菌对重金属的去除作用增强

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摘要

A simple and valid toxicity evaluation of Zn~(2+), Mn~(2+) and Cr~(6+) on sulfate-reducing bacteria (SRB) and heavy metal removal were investigated using the SRB system and SRB+Fe~0 system. The heavy metal toxicity coefficient (0) and the heavy metal concentration resulting in 50% inhibition of sulfate reduction (I) from a modeling process were proposed to evaluate the heavy metal toxicity and nonlinear regression was applied to search for evaluation indices β and I. The heavy metal toxicity order was Cr~(6+) > Mn~(2+) > Zn~(2+). Compared with the SRB system, the SRB+Fe~0 system exhibited a better capability for sulfate reduction and heavy metal removal. The heavy metal removal was above 99% in the SRB+Fe~0 system, except for Mn~(2+). The energy-dispersive spectroscopy (EDS) analysis showed that the precipitates were removed primarily as sulfide for Zn~(2+) and hydroxide for Mn~(2+) and Cr~(6+).The method of evaluating the heavy metal toxicity on SRB was of great significance to understand the fundamentals of the heavy metal toxicity and inhibition effects on the microorganism and regulate the process of microbial sulfate reduction.
机译:利用SRB系统和SRB + Fe〜对Zn〜(2 +),Mn〜(2+)和Cr〜(6+)对硫酸盐还原菌(SRB)的毒性及重金属的去除进行了简单有效的毒性评价。 0系统。提出了重金属毒性系数(0)和重金属浓度导致建模过程中抑制硫酸盐还原50%的作用(I)来评估重金属毒性,并应用非线性回归来寻找评估指标β和I。重金属的毒性顺序为Cr〜(6+)> Mn〜(2+)> Zn〜(2+)。与SRB系统相比,SRB + Fe〜0系统具有更好的硫酸盐还原和重金属去除能力。在SRB + Fe〜0体系中,除Mn〜(2+)外,重金属的去除率均在99%以上。能量色散光谱法(EDS)分析表明,沉淀物主要以Zn〜(2+)的硫化物和Mn〜(2+)和Cr〜(6+)的氢氧化物的形式去除。评价重金属毒性的方法对SRB的研究对了解重金属毒性的基本原理及其对微生物的抑制作用,调节硫酸盐的还原过程具有重要意义。

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