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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Performance of intermittently aerated up-flow sludge bed reactor and sequencing batch reactor treating industrial estate wastewater: A comparative study
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Performance of intermittently aerated up-flow sludge bed reactor and sequencing batch reactor treating industrial estate wastewater: A comparative study

机译:间歇曝气上流污泥床反应器和顺序间歇反应器处理工业园区废水的性能比较研究

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摘要

In this study, an innovative aerobic/anoxic sludge bed bioreactor with two feeding regimes, continuous-fed (an up-flow sludge bed reactor (USBR)) and batch fed (sequencing batch reactor (SBR)), was evaluated for the treatment of an industrial estate wastewater with low BOD _5/COD ratio. The process performance in the two regimes was compared. Two numerical independent variables (retention/react time and aeration time) were selected to analyze, model and optimize the process. Response surface methodology with central composite design (CCD) was used with five levels of hydraulic retention time (HRT)/react time (12-36h) and aeration time (40-60min/h). In order to analyze the process, ten dependent parameters as the process responses were studied. As a result, HRT/react time showed a decreasing impact on the responses measured in both hydraulic regimes, USBR and SBR. The USBR showed better performance than the SBR in removal of total COD, slowly biodegradable COD, total nitrogen and total Kjeldahl nitrogen.
机译:在这项研究中,评估了一种创新的需氧/缺氧污泥床生物反应器,该生物反应器具有两种进料方式:连续进料(上流污泥床反应器(USBR))和分批进料(顺序分批反应器(SBR))。 BOD _5 / COD比低的工业园区废水。比较了两种情况下的过程性能。选择了两个数值自变量(保留/反应时间和曝气时间)来分析,建模和优化过程。使用具有中央复合设计(CCD)的响应面方法,并具有五个水平的水力停留时间(HRT)/反应时间(12-36h)和充气时间(40-60min / h)。为了分析过程,研究了十个相关参数作为过程响应。结果,HRT /反应时间对水力工况USBR和SBR中测得的响应显示出越来越小的影响。 USBR在去除总COD,缓慢可生物降解的COD,总氮和总凯氏氮方面表现出比SBR更好的性能。

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