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首页> 外文期刊>Applied and Environmental Microbiology >Bacterial Population Changes in a Membrane Bioreactor for Graywater Treatment Monitored by Denaturing Gradient Gel Electrophoretic Analysis of 16S rRNA Gene Fragments
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Bacterial Population Changes in a Membrane Bioreactor for Graywater Treatment Monitored by Denaturing Gradient Gel Electrophoretic Analysis of 16S rRNA Gene Fragments

机译:16S rRNA基因片段的变性梯度凝胶电泳分析监测用于膜水处理的膜生物反应器中细菌种群的变化。

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摘要

The bacterial population of a graywater treatment system was monitored over the course of 100 days, along with several wastewater biochemical parameters. The graywater treatment system employed an 1,800-liter membrane bioreactor (MBR) to process the waste, with essentially 100% recycling of the biomass. Graywater feed consisting of 10% galley water and 90% laundry water, selected to approximate the graywater composition on board U.S. Navy ships, was collected offsite. Five-day biological oxygen demand (BOD5), oils and greases (O/G), nitrogen, and phosphorus were monitored in the feed and were found to vary greatly day to day. Changes in the bacterial population were monitored by PCR amplification of region 332 to 518 (Escherichia coli numbering) of the 16S rRNA gene and denaturing gradient gel electrophoresis (DGGE) analysis of the resultant PCR products. DGGE analysis indicated a diverse and unstable bacterial population throughout the 100-day period, with spikes in feed strength causing significant changes in community structure. Long-term similarity between the communities was 0 to 25%, depending on the method of analysis. In spite of the unstable bacterial population, the MBR system was able to meet effluent quality parameters approximately 90% of the time.
机译:在100天的过程中,监测了灰水处理系统的细菌种群,并监测了几种废水的生化参数。灰水处理系统采用1800升膜生物反应器(MBR)来处理废物,其中生物质的回收率基本为100%。现场收集了由10%的厨房水和90%的洗衣水组成的灰水进料,这些水经选择与美国海军舰船上的灰水成分近似。饲料中监测了五天的生物需氧量(BOD 5 ),油脂(O / G),氮和磷,发现它们每天变化很大。通过16S rRNA基因的332-518区(<大肠杆菌>编号)的PCR扩增以及所得PCR产物的变性梯度凝胶电泳(DGGE)分析来监测细菌种群的变化。 DGGE分析表明,在整个100天内,细菌种群数量众多且不稳定,饲料强度猛增导致群落结构发生重大变化。社区之间的长期相似性为0%到25%,具体取决于分析方法。尽管细菌种群不稳定,MBR系统仍能在大约90%的时间内满足出水水质参数。

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