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Water Quality and Microbial Community Changes in an Urban River after Micro-Nano Bubble Technology in Situ Treatment

机译:微纳米泡泡技术原位治疗后,水质和微生物群落的变化

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摘要

Currently, black-odor river has received great attention in China. In this study, the micro-nano bubble technology (MBT) was used to mitigate the water pollution rapidly and continuously by increasing the concentration of dissolved oxygen (DO) in water. During treatment, the concentration of DO increased from 0.60 mg/L to over 5.00 mg/L, and the oxidation reduction potential (ORP) also changed from a negative value to over 100.00 mV after only five days aeration. High throughput pyrosequencing technology was employed to identify the microbial community structure. At genus level, the dominant bacteria were anaerobic and nutrient-loving microbes (e.g., Arcobacter sp., Azonexus sp., and Citrobacter sp.) before, and the relative abundances of aerobic and functional microbes (e.g., Perlucidibaca sp., Pseudarcicella sp., Rhodoluna sp., and Sediminibacterium sp.) were increased after treatment. Meanwhile, the water quality was significantly improved with about 50% removal ratios of chemical oxygen demand (CODCr) and ammonia nitrogen (NH4+-N). Canonical correspondence analysis (CCA) results showed that microbial community structure shaped by COD, DO, NH4+-N, and TP, CCA1 and CCA2 explained 41.94% and 24.56% of total variances, respectively. Overall, the MBT could improve the water quality of urban black-odor river by raising the DO and activate the aerobic microbes.
机译:目前,黑臭河流已经受到了极大的关注中国。在这项研究中,微纳米气泡技术(MBT)用于通过在水中增加的溶解氧(DO)的浓度快速且连续地减轻水的污染。在治疗期间,DO浓度从0.60毫克/ L增加至超过5.00毫克/升,以及所述氧化还原电位(ORP)后只有5天曝气也从负值变化到超过100.00毫伏。高通量焦磷酸测序技术来鉴定的微生物群落结构。在属水平时,优势菌为在厌氧和营养爱好微生物(例如,弓形杆菌属,Azonexus属,柠檬酸杆菌属)之前,以及有氧和功能微生物(例如,Perlucidibaca属,Pseudarcicella SP的相对丰度,Rhodoluna属,Sediminibacterium属)治疗后增加。同时,水质显著用的化学需氧量(化学需氧量)和氨态氮(NH4 + -N)约50%的除去率提高。典范对应分析(CCA)结果表明:通过COD,DO,NH4 + -N,和TP,CCA1和CCA2成形,使得微生物群落结构说明分别41.94%,总方差的24.56%。总体而言,MBT可以提高通过提高做城市黑臭河道的水质并激活好氧微生物。

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