首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Autotrophic and heterotrophic nitrification-anoxic denitrification dominated the anoxic/oxic sewage treatment process during optimization for higher loading rate and energy savings
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Autotrophic and heterotrophic nitrification-anoxic denitrification dominated the anoxic/oxic sewage treatment process during optimization for higher loading rate and energy savings

机译:自养和异养硝化 - 缺氧脱氮在优化期间为更高负载率和节能期间占据缺氧/污水处理过程

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This study clarified the dominant nitrogen (N)-transformation pathway and the key ammonia-oxidizing microbial species at three loading levels during optimization of the anoxic/oxic (A/O) process for sewage treatment. Comprehensive N-transformation activity analysis showed that ammonia oxidization was performed predominantly by aerobic chemolithotrophic and heterotrophic ammonia oxidization, whereas N-2 production was performed primarily by anoxic denitrification in the anoxic unit. The abundances of ammonia-oxidizing bacteria (AOB), nitrite-oxidizing bacteria, and anaerobic AOB in activated sludge reflected their activities on the basis of high-throughput sequencing data. AOB amoA gene clone libraries revealed that the predominant AOB species in sludge samples shifted from Nitrosomonas europaea (61% at the normal loading level) to Nitrosomonas oligotropha (58% and 81% at the two higher loading levels). Following isolation and sequencing, the predominant culturable heterotrophic AOB in sludge shifted from Agrobacterium tumefaciens (42% at the normal loading level) to Acinetobacter johnsonii (52% at the highest loading level).
机译:本研究阐明了在污染物处理的缺氧/氧化(A / O)过程的优化期间三种负载水平的主要氮气(N) - 转换途径和关键氨氧化微生物物种。综合的N-转化活性分析表明,氨氧化主要是通过有氧的化学型营养和异养氨氧化,而N-2产量主要通过缺氧单元中的缺氧反硝化来进行。活性污泥中氨氧化细菌(AOB),亚硝酸盐氧化细菌和厌氧AOB的丰富反映了它们的活性在高通量测序数据的基础上。 AOB Amoa基因克隆文库显示,污泥样品中的主要AOB物种从亚硝基粥样族(正常负载水平)的铕(61%)转移到亚硝基菌寡核苷酸(在两个更高的负载水平下58%和81%)。在分离和测序后,污泥的主要培养异质AOB从根癌菌(正常载荷水平的42%)转移到johnsonii的传导术(最高负载水平52%)。

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