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Ceramsite Facilitated Microbial Degradation of Pollutants in Domestic Wastewater

机译:陶粒促进生活污水中微生物的降解

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摘要

Although constructed wetlands (CWs) are widely used around the world with various substrates, the mechanisms of how these modified substrates affect wastewater treatment are still unknown. In this study, CW microcosms were established with and without ceramsite as a substrate, and the wastewater treatment efficiencies were evaluated during 71 days of incubation. Using the 16S rRNA high-through sequencing, the mechanisms of how CW substrate changed the microbial community was quantified. The results showed that compared to soil as substrate, the use of ceramsite as substrate material enhanced the removal of pollutants from CW systems, particularly under a short retention time (1.5-day) condition. There were more beneficial microorganism groups (nitrogen, sulfur, phosphate) in the ceramsite CW system than the non-ceramsite CW system, particularly in the bottom layers. Moreover, the CW with ceramsite substrate had more nitrification function. All of these results suggested that the ceramsite CW system enhanced the removal of pollutants because it increased the concentration of key microbes that are necessarily for nutrient cycles.
机译:尽管人工湿地(CW)在世界范围内广泛用于各种基质,但这些改性基质如何影响废水处理的机制仍未知。在这项研究中,建立了以和不以陶粒为底物的连续波微观世界,并在温育71天期间评估了废水处理效率。使用16S rRNA高通量测序,定量了CW底物如何改变微生物群落的机制。结果表明,与土壤作为底物相比,使用陶粒作为底物材料可增强从连续波系统中去除污染物的能力,特别是在较短的保留时间(1.5天)条件下。与非陶粒CW系统相比,陶粒CW系统中有更多有益微生物群(氮,硫,磷酸盐),特别是在底层。此外,具有陶粒底物的连续波具有更多的硝化作用。所有这些结果表明,陶粒CW系统增加了污染物的去除,因为它增加了养分循环所必需的关键微生物的浓度。

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