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首页> 外文期刊>Journal of Environmental Management >Kinetics of microbial selenite reduction by novel bacteria isolated from activated sludge
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Kinetics of microbial selenite reduction by novel bacteria isolated from activated sludge

机译:从活性污泥中分离出的新型细菌减少微生物亚硒酸盐的动力学

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A total of three bacteria isolated from activated sludge of a wastewater treatment plant were found to reduce selenite to elemental selenium nanoparticles as both amorphous nanospheres and monoclinic nanocrystals. The three isolated strains, which are potential candidates for bioremediation of selenite-contaminated water sources, were designated as Citrobacter sp. NVK-2, Providencia sp. NVK-2A, and Citrobacter sp. NVK-6 based on 16S rRNA sequencing. Despite belonging to the same genus, the kinetics of selenite reduction by strain NVK-2 (V-max = 58.82 mu M h(-1), K-m = 3737.12 mu M) completely differed from that of strain NVK-6 (V-max = 19.23 mu M h(-1), K-m = 1300.17 mu M). The selenite reduction rate by strain NVK-2A (V-max = 9.26 mu M h(-1), K-m = 3044.73 mu M) was the slowest among the investigated microorganisms. The microbial selenite reduction rates according to various organic sources indicated that simple organic sources such as acetate and lactate were better than more complex organic sources such as propionate, butyrate, and glucose for selenite removal. Interestingly, the selenite reduction rate was significantly enhanced when the organic source was strategically divided into small portions and consecutively supplied to the culture.
机译:从废水处理厂的活性污泥中分离出的总共三种细菌可将亚硒酸盐还原为无定形纳米球和单斜晶纳米晶的硒纳米颗粒。分离出的三个菌株,可能被亚硒酸盐污染的水源进行生物修复,被命名为柠檬酸杆菌。 NVK-2,Providencia sp。 NVK-2A和Citrobacter sp。基于16S rRNA测序的NVK-6。尽管属于同一属,但NVK-2菌株(V-max = 58.82μM h(-1),Km = 3737.12μM)还原亚硒酸盐的动力学与NVK-6菌株(V-max)完全不同=19.23μMh(-1),Km =1300.17μM)。在研究的微生物中,NVK-2A菌株(V-max = 9.26μM h(-1),K-m = 3044.73μM)的亚硒酸盐还原速率最慢。根据各种有机物来源的微生物亚硒酸盐还原率表明,简单的有机物来源(如乙酸盐和乳酸盐)要优于更复杂的有机物来源(如丙酸盐,丁酸盐和葡萄糖)以去除亚硒酸盐。有趣的是,当将有机源策略性地分成小部分并连续提供给培养物时,亚硒酸盐的还原率显着提高。

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