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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effect of hydraulic loading rate on pollutant removal efficiency in subsurface infiltration system under intermittent operation and micro-power aeration
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Effect of hydraulic loading rate on pollutant removal efficiency in subsurface infiltration system under intermittent operation and micro-power aeration

机译:间歇运行和微功率曝气条件下水力负荷率对地下渗透系统污染物去除效率的影响

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The low hydraulic loading rate (HLR) greatly restricts the wide application of subsurface wastewater infiltration system (SWIS) in densely populated areas. To increase the HLR, an innovative SWIS was developed using cyclic operation mode. In each cycle, a wastewater feeding period is followed by a drying period, in which the aeration is conducted by a medium-pressure fan. Results indicated that the removal rate of TOC and NH4+-N were more than 85% at HLR of 0.5 m(3)/m(2) d, whereas the TN removal rate was lower than 20%, indicating that the aeration was efficient and denitrification process was largely limited in the SWIS. When HLR decreased from 0.5 to 0.2 m(3)/m(2) d, the pollutant removal efficiency enhanced slightly except for TN. Overall, the intermittent operation and micro-power aeration, combined with shunting the pollutant loading were really helpful for SWIS to achieve higher HLR, which offers a reference for the design of innovative SWIS. (C) 2016 Elsevier Ltd. All rights reserved.
机译:低水力负荷率(HLR)极大地限制了在人口稠密地区的地下废水渗透系统(SWIS)的广泛应用。为了增加HLR,使用循环操作模式开发了创新的SWIS。在每个循环中,废水进料期之后是干燥期,在此期间,通过中压风机进行曝气。结果表明,在0.5 m(3)/ m(2)d的HLR下,TOC和NH4 + -N的去除率均超过85%,而TN去除率则低于20%,表明通气是有效的,并且SWIS的反硝化过程受到很大限制。当HLR从0.5降低到0.2 m(3)/ m(2)d时,除TN外,污染物去除效率略有提高。总体而言,间歇运行和微功率曝气,以及分流污染物负荷,对于SWIS获得更高的HLR确实有帮助,这为创新的SWIS设计提供了参考。 (C)2016 Elsevier Ltd.保留所有权利。

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