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利用新型漂浮纤维介质评估上向雨水过滤系统的固体去除效果并优化反冲洗。

Evaluation of solids removal and optimisation of backwashing for an upflow stormwater filtration system utilising novel floating fibrous media.

机构信息

Department of Environmental Engineering, Seoul National University of Science and Technology, Seoul, Republic of Korea.

C&C Inc., Siheung, Republic of Korea.

出版信息

Environ Technol. 2021 Jun;42(14):2132-2144. doi: 10.1080/09593330.2019.1694080. Epub 2019 Nov 19.

Abstract

Although filtration devices are already widely used for stormwater runoff treatment, there are much to be improved to ensure the required performance. Additionally, the performance of a device should be verified before on-site installation. In this context, an upflow filtration system using novel high porosity floating fibrous media formed into spherical shape was proposed and evaluated for solid capture and backwashing. At filtration velocities of 20-40 m/h, the maximum head loss was about 2 cm even under a solid load of 30 kg/m, and suspended solid (SS) removal efficiency was >96% throughout 300 min. A considerable amount of SS was removed in the pretreatment chamber, so the load on the media was reduced. Several models were tried to describe the solid capture in the media. The coefficients of solid attachment/detachment showed good correlations with filtration velocity. Other parameters indicated a variation of solid capture and permeability, which is unique to the media in this study. The backwashing with air and water for 1-2 min each showed good head loss recovery under the SS load up to 550-600 kg/m, and the SS discharge was more efficient when the stagnant water was drained before water backwashing. The results in this study suggest the high potential of the combination of fibrous media and upflow filtration system for the efficient control of the nonpoint source pollutants in stormwater runoff.

摘要

尽管过滤设备已经广泛用于雨水径流处理,但仍有许多需要改进之处,以确保达到所需的性能。此外,在现场安装之前,还应验证设备的性能。在此背景下,提出并评估了一种使用新型高孔隙率浮式纤维介质的上向流过滤系统,用于固粒捕获和反冲洗。在过滤速度为 20-40 m/h 的情况下,即使在固体负荷为 30 kg/m 的情况下,最大水头损失约为 2 cm,悬浮物(SS)去除效率在 300 min 内均>96%。大量的 SS 在前处理室中被去除,因此介质上的负荷减轻了。尝试了几种模型来描述介质中的固粒捕获。固粒附着/脱附系数与过滤速度有很好的相关性。其他参数表明固粒捕获和渗透率的变化,这是本研究中该介质所特有的。采用空气和水分别反冲洗 1-2 min,在 SS 负荷高达 550-600 kg/m 时,水头损失恢复良好,在反冲洗前先排干死水时,SS 排放效率更高。本研究结果表明,纤维介质与上向流过滤系统的结合具有高效控制雨水径流中非点源污染物的巨大潜力。

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