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Anti-bacterial Effects of MnO

机译:MNO的抗细菌作用

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摘要

We focused on the use of abiotic MnO2 to develop reactors for enriching manganese-oxidizing bacteria (MnOB), which may then be used to treat harmful heavy metal-containing wastewater and in the recovery of useful minor metals. Downflow hanging sponge (DHS) reactors were used under aerobic and open conditions to investigate the potential for MnOB enrichment. The results of an experiment that required a continuous supply of organic feed solution containing Mn(II) demonstrated that MnOB enrichment and Mn(II) removal were unsuccessful in the DHS reactor when plain sponge cubes were used. However, MnOB enrichment was successful within a very short operational period when sponge cubes initially containing abiotic MnO2 were installed. The results of a microbial community analysis and MnOB isolation revealed that MnOB belonging to Comamonadaceae or Pseudomonas played a major role in Mn(II) oxidation. Successful MnOB enrichment was attributed to several unidentified species of Chitinophagaceae and Gemmataceae, which were estimated to be intolerant of MnO2, being unable to grow on sponge cubes containing MnO2. The present results show that MnO2 exerted anti-bacterial effects and inhibited the growth of certain non-MnOB groups that were intolerant of MnO2, thereby enabling enriched MnOB to competitively consume more substrate than MnO2-intolerant bacteria.
机译:我们专注于使用非生物MNO2,为富含锰氧化细菌(MNOB)的反应器,其可以用于治疗有害的重金属废水和恢复有用的轻质金属。下流悬挂海绵(DHS)反应器被使用在有氧和开放条件下,以研究富含MNOB富集的可能性。需要连续供应含有Mn(II)的有机进料溶液的实验结果证明了当使用普通海绵立方体时,在DHS反应器中,在DHS反应器中取出MNOB富集和Mn(II)的去除率。然而,当安装最初含有非生物mNO2的海绵立方体时,MNOB富集在非常短的运行期内成功。微生物群落分析和MNOOB分离的结果显示,属于Comamonadaceae或假单胞菌的MNOB在Mn(II)氧化中发挥了重要作用。成功的MNOOB富集归因于几种未识别的几个邻龟藻和Gemmataceae,估计是MNO2的不耐受性,不能在含有MNO2的海绵立方体上生长。本结果表明,MNO2施加抗细菌作用,抑制某些非MNOB基团的生长,其不耐受MNO2,从而使富集的MNOB能够比MnO2 - 不宽容的细菌竞争地消耗更多的基质。

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