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The Characteristics of Microbial Ecosystem Response with the Changes of Hydrolic Retention Time on an Aerobic Fixed-Biofilm Biological Nutrient Removal System

机译:有氧固定生物膜生物营养去除系统中水力停留时间变化对微生物生态系统响应的影响

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The influence of an aerobic fixed-biofilm activity, microbial ecosystem and mass transfer with respect to HRT variation in a BNR (biological nutrient removal) system has been investigated in this study. The process used in this study was an anoxic (1)/aerobic (1)/anoxic (2)/aerobic (2) system. The study was demonstrated by several kinds of techniques such as INT-dehydrogenase activity (DHA), INT (2-(p-iodophenyl)-3-(p-nitrophenyl)-5-phenyl tetra-zolium chloride), DAPI (4',6'-diamidino-2-phenylindole hydrochloride), and microelectrode. The study used by synthetic wastewater and HRT variation demonstrated that the DHA activity, density and heterotrophs/autotrophs ratio increased, as the HRT decreased from 8 hr to 4 hr. In comparing two aerobic reactors in fixed-biofilm process, the first aerobic reactor of the higher C/N ratio showed higher heterotrophs/autotrophs ratio and microbial activity than the second aerobic reactor. It was therefore concluded that the heterotrophs/autotrophs ratio and microbial activity were a greater influence on the first aerobic reactor, as organic loading rate was increased by HRT variation.
机译:在这项研究中,已经研究了有氧固定生物膜活性,微生物生态系统和传质对BNR(生物营养去除)系统中HRT变化的影响。在这项研究中使用的过程是缺氧(1)/好氧(1)/缺氧(2)/好氧(2)系统。该研究已通过多种技术证明,例如INT脱氢酶活性(DHA),INT(2-(对碘苯基)-3-(对硝基苯基)-5-苯基四唑氯化物),DAPI(4' ,6'-二mid基-2-苯基吲哚盐酸盐)和微电极。合成废水和HRT变化所使用的研究表明,随着HRT从8小时减少到4小时,DHA活性,密度和异养生物/自养生物比率增加。在比较固定生物膜工艺中的两个好氧反应器时,比第二好氧反应器具有更高的C / N比的第一个好氧反应器显示出更高的异养/自养比和微生物活性。因此得出的结论是,随着HRT的变化,有机负荷率增加,异养生物/自养生物比率和微生物活性对第一个好氧反应器的影响更大。

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