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New operational strategy for SBR technology for total nitrogen removal from industrial wastewaters highly loaded with nitrogen

机译:SBR技术的新操作策略,用于从含氮量高的工业废水中去除总氮

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摘要

The present work deals with the upgrading of conventional Sequential Batch Reactor (SBR) technology for treating industrial wastewater. The aim is to obtain total nitrogen removal in a single SBR by implementing short aeration cycles. The operational strategy of conventional SBR consisting of a sequence of five phases (filling, aeration, stirring, settling and withdrawing) is simplified into a four phases sequence (filling, short cycled aeration, settling and withdrawing). This operational sequence has been proven to be adequate for total nitrogen removal from high strength wastewater containing nitrogen (up to 700 mg TKN/L) and organic matter (up to 2,000 mg COD/L). Short-cycled aeration allowed for a more efficient use of the oxygen supply for nitrification and the organic carbon content present in the wastewater for denitrification. The results here reported show that initially the tested technology is feasible and can report significant outs in operation and maintenance when compared with conventional SBR processes. Total nitrogen removal up to 79% was attained treating the effluent of an UASB process;designed for treating the wastewater of a potato starch factory. Total nitrogen removal capacities ranging between 0.2 and 0.65 kg of nitrogen per cubic metre per day are reported. [References: 13]
机译:目前的工作涉及处理工业废水的常规顺序间歇反应器(SBR)技术的升级。目的是通过实施短的曝气循环,在单个SBR中获得总氮去除量。由五个阶段(填充,充气,搅拌,沉降和抽出)组成的常规SBR的操作策略简化为四个阶段的序列(填充,短周期曝气,沉降和抽出)。事实证明,该操作顺序足以去除含氮(高达700 mg TKN / L)和有机物(高达2,000 mg COD / L)的高强度废水中的总氮。短周期的曝气可以更有效地利用氧气供应进行硝化,而废水中的有机碳含量则可以用于反硝化。此处报告的结果表明,与传统的SBR工艺相比,最初经过测试的技术是可行的,并且可以报告运行和维护方面的重大故障。处理UASB工艺废水的总氮去除率高达79%;该工艺设计用于处理马铃薯淀粉工厂的废水。据报道,总脱氮能力为每天每立方米0.2至0.65千克氮。 [参考:13]

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