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首页> 外文期刊>Nature environment and pollution technology >Effect of Temperature Downshifts on Performance and Microbial Community Structure on Pilot-Scale Sequencing Batch Biofilm Reactors Treating Hypersaline Wastewater
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Effect of Temperature Downshifts on Performance and Microbial Community Structure on Pilot-Scale Sequencing Batch Biofilm Reactors Treating Hypersaline Wastewater

机译:温度降幅对试验尺度测序分批生物膜反应器的性能和微生物群落结构的影响治疗氧碱废水

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Low temperature and high salinity can strongly inhibit metabolic activities of the microbial population, resulting in low efficiency of biological wastewater treatment. Using 70 g.L-1 NaCl pickle mustard wastewater as influent, three pilot-scale sequencing batch biofilm reactors (SBBRs), subjected to temperature downshifts and fluctuation ranging from 30 ± 4°C to 10 ± 4°C, were conducted over 200 days. Polymerase Chain Reaction-Denaturing Gradient Gel Electrophoresis (PCR–DGGE) was used to reveal the microbial community structure succession in reactors. Results showed that when the temperature was 10 ± 4°C, the COD removal efficiencies of SBBRs (1, 2 and 3 kg COD m-3 d-1organic loading rate), were 91.6% (σ = 0.87), 87.84% (σ = 0.92) and 83.34 % (σ = 0.85), respectively. Compared with the average removal efficiencies when the reactors operated at 30 ± 4°C, the efficiency reductions of 1, 2 and 3 kg COD m-3 d-1 reactors were 4.47%, 4.58% and 4.57%. As the temperature decreased, microbial population diversity did not change remarkably. However, the microbial structure changed significantly, bacteria which had strong adhesion and a wide growth temperature range were competitive. At low temperature, the predominant species were Thalassolituus oleivorans, Halotalea alkalilenta and Kangiella koreensis, which were all related to pollutant-degrading halophilic bacteria.
机译:低温和高盐度可以强烈抑制微生物种群的代谢活动,导致生物废水处理的低效率。使用70 G.L-1 NaCl泡菜芥末废水作为流动性,三种试验尺寸测序分批生物膜反应器(SBBRS)经受温度降低和波动范围为30±4°C至10±4°C,超过200天进行。聚合酶链式反应变性梯度凝胶电泳(PCR-DGGE)用于揭示反应器中的微生物群落结构连续。结果表明,当温度为10±4°C时,SBBRS(1,2和3kg COD M-3 D-1-1-1-1-1-1-1ororgan负载率)的COD去除效率为91.6%(σ= 0.87),87.84%(σ = 0.92)和83.34%(σ= 0.85)。与平均去除效率相比,当反应器在30±4℃下操作时,1,2和3kg COD M-3 D-1反应器的效率降低为4.47%,4.58%和4.57%。随着温度降低,微生物种群多样性显着变化。然而,微生物结构发生显着变化,具有强烈粘附性和宽的生长温度范围的细菌具有竞争力。在低温下,主要物种是Thalassolituus Oleivorans,Halotalea碱金属菌和Kangiella Koreensis均与污染物降解嗜盐细菌有关。

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