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首页> 外文期刊>QScience Connect >Removal of mercury in fixed-bed continuous upflow reactors by mercury-resistant bacteria and effect of sodium chloride on their performance
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Removal of mercury in fixed-bed continuous upflow reactors by mercury-resistant bacteria and effect of sodium chloride on their performance

机译:耐汞细菌去除固定床连续上流反应器中的汞,以及氯化钠对其性能的影响

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Urgent need to reduce the amount of toxic mercury compounds in the wastewater of industries and subsequent reuse of metal ions, has led to an increasing interest in microbial bioremediation. Two Pseudomonas aeruginosa strains, namely, isolate CH07 and isolate Bro12, and a genetically engineered strain P. putida (KT 2442 mer::73) were used to study the kinetics of mercury removal from liquid M9 medium, considering the potential of the bacteria in volatilizing ionic mercury to its gaseous form. The P. aeruginosa strains were further used to remove toxic mercury from synthetic wastewater in fixed-bed, continuous upflow reactors and thereafter to recover the toxic metal from the reactor beds. We also studied the effect of sodium chloride on the kinetics of mercury removal by the isolate CH07 from marine sediment, as well as the other two non-marine bacteria. After a successful run of over a month, the bioreactors were able to retain the toxic metal, which resulted in a recovery of approximately 64% of the influent mercury. No major alteration in the retention capacity of the bioreactors occurred during drastic changes in concentration of inflowing metals or salt concentration.
机译:迫切需要减少工业废水中的有毒汞化合物的量以及随后对金属离子的再利用,引起了人们对微生物生物修复的日益增长的兴趣。考虑到细菌的潜能,使用了两个铜绿假单胞菌菌株CH07和Bro12分离株,以及一个基因工程菌株恶臭假单胞菌(KT 2442 mer :: 73)研究了液态M9培养基中除汞的动力学。将离子汞挥发成气态形式。铜绿假单胞菌菌株还用于在固定床,连续上流反应器中从合成废水中去除有毒汞,然后从反应器床中回收有毒金属。我们还研究了氯化钠对从海洋沉积物以及其他两种非海洋细菌中分离出的CH07去除汞动力学的影响。经过一个多月的成功运行,生物反应器能够保留有毒金属,从而回收了大约64%的流入汞。在流入的金属浓度或盐浓度发生急剧变化的过程中,生物反应器的保留容量没有发生重大变化。

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