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Impact of filter media on the performance of full-scale recirculating biofilters for treating multi-residential wastewater

机译:滤料对全尺寸循环生物滤池处理多住宅废水性能的影响

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The main objective of this paper was to evaluate the effectiveness of silica sand, crushed glass, peat, and geotextile as a medium in RBFs in the removal for organic matter, nutrients and bacteria from domestic wastewater based on a field-scale study. In particular, this field-scale study was conducted to treat domestic wastewater from a small community of 10 households from the Municipality of Lunenburg, Nova Scotia, Canada. The average influent 5d biochemical oxygen demand (BOD_5) and total suspended solids (TSS) concentrations into the field filter system were 381 ± 64 (mean ± standard deviation) and 46 ± 21 mg/L, respectively. The results showed that crushed glass could be an effective medium in RBFs since the crushed glass filter produced stable effluent BOD_5 and TSS concentrations of less than 20 mg/L. Geotextile was found to be another successful alternative filter medium with the effluent BOD_5 and TSS of 18 ±11 and 11 ± 7 mg/L, respectively, even though the porosity of geotexitle filter was as high as 0.90. Peat was not able to provide efficient performance due to its poor BOD_5 and NH_4~+-N removals. This study measured the water quality variation at different components of the RBFs. The results of this study showed that the recirculation tank was the main facilitator of the denitrification process. In addition, this study found that RBFs could efficiently treat domestic wastewater for BOD_5 removal under the organic loading rates as high as 0.070 kg/m~2/d.
机译:本文的主要目的是在实地研究的基础上,评估硅砂,碎玻璃,泥炭和土工织物作为RBF中的介质从生活污水中去除有机物,养分和细菌的有效性。特别是,进行了这项现场规模的研究,以处理来自加拿大新斯科舍省卢嫩堡市的10个家庭的小社区的生活污水。进入现场过滤系统的5d生化需氧量(BOD_5)和总悬浮固体(TSS)的平均浓度分别为381±64(平均值±标准偏差)和46±21 mg / L。结果表明,碎玻璃可以作为RBF中的有效介质,因为碎玻璃过滤器产生的出水BOD_5稳定,TSS浓度小于20 mg / L。发现土工织物是另一种成功的替代过滤介质,尽管土工膜过滤器的孔隙率高达0.90,但出水BOD_5和TSS分别为18±11和11±7 mg / L。泥炭由于BOD_5和NH_4〜+ -N去除率低而无法提供有效的性能。这项研究测量了RBFs不同部分的水质变化。这项研究的结果表明,再循环池是反硝化过程的主要推动者。此外,研究发现,在有机负荷高达0.070 kg / m〜2 / d的条件下,RBFs可以有效处理生活污水中BOD_5的去除。

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