首页> 外文期刊>Research journal of applied science, engineering and technology >Effect of Hydraulic Retention Time and Wastewater Temperature on Treatment Efficiency of Upflow Anaerobic Filter Treating Campus Domestic Wastewater
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Effect of Hydraulic Retention Time and Wastewater Temperature on Treatment Efficiency of Upflow Anaerobic Filter Treating Campus Domestic Wastewater

机译:水力停留时间和废水温度对上流式厌氧滤池处理校园生活废水的影响

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The study examined the removal efficiency of upflow anaerobic filter reactor fed continuously with campus domestic wastewater at different hydraulic retention time and wastewater temperature. The reactor was filled with non woven filter materials and operated at hydraulic retention time ranging from 1 to 6 days and wastewater temperature ranging from 20 to 30℃. At that operating condition, the result revealed no significant difference for Carbonaceous (COD) and nutrients materials except there was significant production of gas. The result revealed that increase in HRT and wastewater temperature improves removal performance of the reactor. The overall reactor removal efficiency for COD, TN, NH_4~+-N, NO_3~-N and TP concentration were 51, 22, 21, 28 and 10% and 61 35, 37, 49 and 27% in the anaerobic and anoxic columns, respectively. The experimental system was capable of instantaneous removal of the carbonaceous, nitrogenous and phosphorous compounds.
机译:该研究研究了在不同水力停留时间和废水温度下连续供给校园生活污水的上流厌氧滤池反应器的去除效率。该反应器装有无纺布过滤材料,并在1至6天的水力停留时间和20至30℃的废水温度下运行。在该操作条件下,结果表明碳质(COD)和营养物质没有显着差异,只是产生了大量的气体。结果表明,HRT和废水温度的提高改善了反应器的去除性能。在厌氧和缺氧塔中,COD,TN,NH_4〜+ -N,NO_3〜-N和TP浓度的总反应器去除效率分别为51%,22%,21%,28%和10%,以及615%,37%,49%和27% , 分别。该实验系统能够瞬时去除碳,氮和磷化合物。

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