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首页> 外文期刊>Water Science and Technology >Hydrodynamic performance of a hybrid anaerobic baffled reactor (HABR): effects of number of chambers, hydraulic retention time, and influent temperature
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Hydrodynamic performance of a hybrid anaerobic baffled reactor (HABR): effects of number of chambers, hydraulic retention time, and influent temperature

机译:杂交厌氧膨胀反应器(HABR)的流体动力学性能:腔室数,液压保留时间和流入温度的影响

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Hydrodynamic performance of a biological reactor is an important design concern since it directly affects the treatment efficiency. In this research, a hybrid anaerobic baffled reactor (HABR) was proposed with improved design concepts and principles. The HABR consisted of a front sedimentation chamber, four regular baffled chambers followed by two floated filter media chambers. The effects of operating variables 5-20 hr hydraulic retention time (HRT) and 10-40 degrees C of influent temperature, as well as their interactive effects, on the hydrodynamic behaviour were investigated by residence time distributions study and response surface methodology. The study suggests that the hydrodynamic performance is greatly influenced by the number of chambers in the reactor rather than HRT and influent temperature. The influence of HRT and feed temperature were mainly observed on the front chambers (1-4) rather than rear chambers (5-7). The optimum reactor performance - low dead space (10%), excellent hydraulic efficiency (0.75), and intermediate mixing pattern (Peclet number 10) - were achieved using the proposed HABR with more than five chambers.
机译:生物反应器的流体动力学性能是重要的设计关注,因为它直接影响治疗效率。在本研究中,提出了一种具有改进的设计概念和原则的杂交厌氧挡板反应器(HABR)。 HABR由前沉降室组成,四个常规挡板腔室,然后是两个浮动过滤介质室。通过停留时间分布研究和响应表面方法研究了操作变量5-20小时液压保留时间(HRT)和10-40摄氏度的10-40℃,以及它们的互动效应。该研究表明,流体动力学性能受反应器中的腔室的数量而不是HRT和流入温度的影响。在前腔室(1-4)而不是后腔(5-7)上主要观察HRT和进料温度的影响。最佳反应器性能 - 低死区(10%),优异的液压效率(& 0.75)和中间混合图案(Peclet编号& 10) - 使用具有超过五个腔室的提出的HABR实现。

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