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Nitrification and denitrifying phosphorus removal in an upright continuous flow reactor

机译:立式连续流反应器中的硝化和反硝化除磷

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Simultaneous nitrification and denitrifying phosphorus removal was achieved in a single-sludge continuous flow bioreactor. The upright bioreactor was aligned with a biomass fermenter (BF) and operated continuously for over 350 days. This study revealed that unknown bacteria of the Saprospiraceae class may have been responsible for the successful nutrient removal in this bioreactor. The successive anoxic-aerobic stages of the bioreactor with upright alignment along with a 60 L BF created a unique ecosystem for the growth of nitrifier, denitrifiers, phosphorus accumulating organisms and denitrifying phosphorus accumulating organisms. Furthermore, total nitrogen to chemical oxygen demand (COD) ratio and total phosphorus to COD ratio of 0.6 and 0.034, respectively, confirmed the comparative advantages of this advanced nutrient removal process relative to both sequencing batch reactors and activated sludge processes. The process yielded 95% nitrogen removal and over 90% phosphorus removal efficiencies.
机译:在单污泥连续流生物反应器中实现了同时硝化和反硝化除磷。将立式生物反应器与生物质发酵罐(BF)对准,并连续运行超过350天。这项研究表明,腐菌科的未知细菌可能是该生物反应器成功去除营养的原因。直立排列的生物反应器连续的缺氧-好氧阶段以及60 L BF为硝化器,反硝化器,磷积累生物和反硝化磷积累生物的生长创造了独特的生态系统。此外,总氮与化学需氧量(COD)之比和总磷与COD之比分别为0.6和0.034,证实了这种先进的营养物去除工艺相对于分批反应器和活性污泥工艺均具有比较优势。该方法的脱氮率达到95%,磷去除率超过90%。

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