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Protection of biomass from snail overgrazing in a trickling filter using sponge media as a biomass carrier: down-flow hanging sponge system

机译:使用海绵介质作为生物质载体,在滴滤池中保护生物质免于蜗牛过度放牧:下流式悬挂式海绵系统

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摘要

This study investigated down-flow hanging sponge (DHS) technology as a promising trickling filter (TF) using sponge media as a biomass carrier with an emphasis on protection of the biomass against macrofauna overgrazing. A pilot-scale DHS reactor fed with low-strength municipal sewage was operated under ambient temperature conditions for 1 year at a sewage treatment plant in Bangkok, Thailand. The results showed that snails (macrofauna) were present on the surface of the sponge media, but could not enter into it, because the sponge media with smaller pores physically protected the biomass from the snails. As a result, the sponge media maintained a dense biomass, with an average value of 22.3 gVSS/L sponge (58.1 gTSS/L sponge) on day 370. The snails could graze biomass on the surface of the sponge media. The DHS reactor process performance was also successful. The DHS reactor requires neither chemical treatments nor specific operations such as flooding for snail control. Overall, the results of this study indicate that the DHS reactor is able to protect biomass from snail overgrazing.
机译:这项研究调查了下流式悬挂海绵(DHS)技术作为一种有希望的滴滤器(TF),该技术使用海绵介质作为生物质载体,并着重保护生物质免受大型动物的过度放牧。在泰国曼谷的污水处理厂中,将装有低浓度市政污水的中试DHS反应器在环境温度条件下运行1年。结果表明,蜗牛(大棚动物)存在于海绵介质的表面,但不能进入,因为具有较小孔的海绵介质从物理上保护了生物质免受蜗牛的侵害。结果,海绵介质保持了密集的生物量,在第370天的平均值为22.3 gVSS / L海绵(58.1 gTSS / L海绵)。蜗牛可以在海绵介质的表面上吃草生物量。 DHS反应器工艺性能也很成功。 DHS反应器不需要化学处理,也不需要特定的操作(例如注水来控制蜗牛)。总的来说,这项研究的结果表明,DHS反应器能够保护生物量免受蜗牛过度放牧的影响。

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