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首页> 外文期刊>Water Environment Research >Performance of a Full-Scale Biofilm System Retrofitted with an Upflow Multilayer Bioreactor as a Preanoxic Reactor for Advanced Wastewater Treatment
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Performance of a Full-Scale Biofilm System Retrofitted with an Upflow Multilayer Bioreactor as a Preanoxic Reactor for Advanced Wastewater Treatment

机译:配备向上流动的多层生物反应器作为高级缺氧反应器的全氧生物膜系统的性能

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摘要

To enhance nitrogen removal in an existing microbial contact oxidation (MCO) system with a treatment capacity of 900 m~3/d, an upflow multilayer bioreactor (UMBR) was chosen as a preanoxic reactor for the removal of organic matter and nitrate. The removal performance of the retrofitted plant was evaluated during the startup phase at a low temperature in winter. The high removal (>80%) of organic matter and suspended solids in the UMBR provided stable nitrification conditions in the MCO system, as a result of the substantial reduction in organic matter and solids loaded onto the MCO system. This treatment system showed a stable nitrogen removal efficiency of 75.3%, even in the low temperature range 7 to 10℃. Phosphorus was completely removed by chemical precipitation. Production rates of excess sludge, as a function of the loads of influent flowrate and biological oxygen demand (BOD), were 0.022 kg dry solid/m~3 wastewater and 0.132 kg dry solid/kg BOD.
机译:为了在处理能力为900 m3 / d的现有微生物接触氧化(MCO)系统中提高脱氮效率,选择了上流式多层生物反应器(UMBR)作为脱氧前反应器,以去除有机物和硝酸盐。在冬季的低温启动阶段,评估了改造工厂的去除性能。 UMBR中有机物和悬浮固体的高去除率(> 80%)在MCO系统中提供了稳定的硝化条件,这是由于有机物和装载到MCO系统中的固体大量减少的结果。该处理系统即使在7至10℃的低温范围内也显示出75.3%的稳定脱氮效率。通过化学沉淀将磷完全去除。过量污泥的生产率随进水流量和生物需氧量(BOD)的变化而变化,分别为0.022千克干固体/ m〜3废水和0.132千克干固体/千克BOD。

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