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Effect of pH on inactivation of Microcystis aeruginosa by ozonation air in sequencing batch reactor

机译:pH对测序间歇反应器中臭氧空气对铜绿微囊藻灭活的影响

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摘要

In this study, a mixture of ozone and air (ozonation air for short) was adopted for the inactivation of Microcystis aeruginosa in a sequencing batch reactor (SBR). Scanning electron microscopy of Microcystis aeruginosa revealed damage to the cell wall and leakage of intracellular contents after ozone oxidation. Owing to the destruction of cells, the chlorophyll a released from the cells was degraded by ozone oxidation, which showed that chlorophyll a concentrations increased vastly during the first 5 min, then, decreased continuously. pH in the SBR declined with increasing time, reaching around 3.0 at the end of the cycle. It was observed that the removal efficiencies of chlorophyll a were, respectively, 68.4%, 74.5%, 86.7% and 77.9% after 90 min at pH 3.0, 7.0, 9.0 and 11.0 conditions, and the degradation of chlorophyll a accorded with the apparent first-order kinetics. The results suggested that inactivation of Microcystis aeruginosa was successfully performed by ozone treatment, verifying the potential of this alternative process for the decontamination of eutrophic water.
机译:在这项研究中,采用了臭氧和空气的混合物(简称臭氧化空气)在顺序分批反应器(SBR)中灭活了铜绿微囊藻。铜绿微囊藻的扫描电子显微镜显示臭氧氧化后对细胞壁的损害和细胞内内容物的泄漏。由于细胞的破坏,从细胞释放的叶绿素a被臭氧氧化降解,这表明叶绿素a的浓度在最初的5分钟内急剧增加,然后连续下降。 SBR中的pH随时间增加而下降,在循环结束时达到3.0左右。观察到在pH 3.0、7.0、9.0和11.0的条件下90分钟后,叶绿素a的去除效率分别为68.4%,74.5%,86.7%和77.9%,并且叶绿素a的降解与表观首次相符。阶动力学。结果表明,通过臭氧处理成功地完成了铜绿微囊藻的灭活,证实了该替代方法对富营养化水进行去污的潜力。

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