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Effects of Aeration Cycles on Nitrifying Bacterial Populations and Nitrogen Removal in Intermittently Aerated Reactors

机译:曝气循环对间歇曝气反应器硝化细菌种群和脱氮的影响

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摘要

The effects of the lengths of aeration and nonaeration periods on nitrogen removal and the nitrifying bacterial community structure were assessed in intermittently aerated (IA) reactors treating digested swine wastewater. Five IA reactors were operated in parallel with different aeration-to-nonaeration time ratios (ANA). Populations of ammonia-oxidizing bacteria (AOB) and nitrite-oxidizing bacteria (NOB) were monitored using 16S rRNA slot blot hybridizations. AOB species diversity was assessed using amoA gene denaturant gradient gel electrophoresis. Nitrosomonas and Nitrosococcus mobilis were the dominant AOB and Nitrospira spp. were the dominant NOB in all reactors, although Nitrosospira and Nitrobacter were also detected at lower levels. Reactors operated with the shortest aeration time (30 min) showed the highest Nitrosospira rRNA levels, and reactors operated with the longest anoxic periods (3 and 4 h) showed the lowest levels of Nitrobacter, compared to the other reactors. Nitrosomonas sp. strain Nm107 was detected in all reactors, regardless of the reactor's performance. Close relatives of Nitrosomonas europaea, Nitrosomonas sp. strain ENI-11, and Nitrosospira multiformis were occasionally detected in all reactors. Biomass fractions of AOB and effluent ammonia concentrations were not significantly different among the reactors. NOB were more sensitive than AOB to long nonaeration periods, as nitrite accumulation and lower total NOB rRNA levels were observed for an ANA of 1 h:4 h. The reactor with the longest nonaeration time of 4 h performed partial nitrification, followed by denitrification via nitrite, whereas the other reactors removed nitrogen through traditional nitrification and denitrification via nitrate. Superior ammonia removal efficiencies were not associated with levels of specific AOB species or with higher AOB species diversity.
机译:在间歇性曝气(IA)反应器中处理猪场消化的废水,评估了曝气和非曝气时间长度对脱氮和硝化细菌群落结构的影响。五个IA反应器以不同的曝气与非曝气时间比(ANA)并联运行。使用16S rRNA狭缝印迹杂交监测氨氧化细菌(AOB)和亚硝酸盐氧化细菌(NOB)的种群。使用amoA基因变性梯度凝胶电泳评估AOB物种多样性。亚硝化单胞菌和运动型硝化球菌是主要的AOB和硝化螺菌属。是所有反应器中主要的NOB,尽管亚硝基螺菌和硝化细菌的含量也较低。与其他反应器相比,在最短曝气时间(30分钟)下运行的反应器显示出最高的亚硝基螺菌rRNA水平,在缺氧时间最长(3和4小时)下运行的反应器显示出最低的硝化细菌水平。亚硝基亚种无论反应器的性能如何,在所有反应器中均检测到Nm107菌株。 Nitrosomonas europaea,Nitrosomonas sp的近亲。在所有反应堆中偶尔都检测到ENI-11菌株和多形亚硝基螺菌。 AOB的生物质分数和废水氨浓度在反应器之间没有显着差异。 NOB比AOB对较长的通气时间更敏感,因为在1 h:4 h的ANA上观察到亚硝酸盐积累和较低的总NOB rRNA水平。最长非充气时间为4小时的反应器进行了部分硝化,然后通过亚硝酸盐进行反硝化,而其他反应器通过传统的硝化作用除去了氮,并通过硝酸盐进行了反硝化。优异的除氨效率与特定AOB物种的水平或更高的AOB物种多样性无关。

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