首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Microbial community succession and its correlation with reactor performance in a sponge membrane bioreactor coupled with fiber-bundle anoxic bio-filter for treating saline mariculture wastewater
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Microbial community succession and its correlation with reactor performance in a sponge membrane bioreactor coupled with fiber-bundle anoxic bio-filter for treating saline mariculture wastewater

机译:微生物群落连续及其与纤维 - 束缺氧生物过滤器中的海绵膜生物反应器反应器性能的相关性及其对处理盐水养殖废水的纤维束xoxic生物过滤器

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摘要

The application of MBR in high saline wastewater treatment is mainly constrained by poor nitrogen removal and severe membrane fouling caused by high salinity stress. A novel carriers-enhanced MBR system was successfully developed for treating saline mariculture wastewater, which showed efficient TN removal (93.2%) and fouling control. High-throughput sequencing revealed the enhancement mechanism of bio-carriers under high saline condition. Bio-carriers substantially improved the community structure, representatively, nitrifiers abundance (Nitrosomonas, Nitrospira) increased from 2.18% to 9.57%, abundance of denitrifiers (Sulfurimonas, Thermogutta, etc.) also rose from 3.81% to 14.82%. Thereby, the nitrogen removal process was enhanced. Noteworthy, ammonia oxidizer (Nitrosomonas, 8.26%) was the absolute dominant nitrifiers compared with nitrite oxidizer (Nitrospira, 1.13%). This supported the finding of shortcut nitrification-denitrification process in hybrid system. Moreover, a series of biomacromolecule degraders (Lutibacterium, Cycloclasticus, etc.) were detected in bio-carriers, which could account for the mitigation of membrane fouling as result of EPS and SMP degradation.
机译:MBR在高盐水废水处理中的应用主要受高盐度应力引起的氮去除和严重膜污垢的影响。成功开发了一种新型载体增强的MBR系统,用于治疗盐水海水养殖废水,其显示出高效的去除(93.2%)和污垢控制。高通量测序显示生物载体在高盐水条件下的增强机制。生物载体基本上改善了群落结构,代表性地,氮杂物丰度(亚硝基菌,氮气)从2.18%增加到9.57%,脱氮剂(磺酸,Thermogutta等)的丰度也从3.81%上升至14.82%。由此,提高了氮去除过程。值得注意的是,与亚硝酸盐氧化剂(Nitrospira,1.13%)相比,氨氧化剂(亚硝基菌,8.26%)是绝对显性氮因子。这支持在混合系统中找到快捷硝化 - 反硝化过程。此外,在生物载体中检测了一系列生物致摩洛曲子(Lutibacterium,Cycloclasticus等),这可能考虑因EPS和SMP降解而减轻膜污染。

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