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Integrated control of nitrate recirculation and external carbon addition in a predenitrification system

机译:预硝化系统中硝酸盐再循环和外部碳添加的集成控制

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The integrated control of nitrate recirculation and external carbon addition in a predenitrification biological wastewater treatment system is studied. The proposed control structure consists of four feedback control loops, which manipulate the nitrate recirculation and the carbon dosage flows in a highly coordinated manner such that the consumption of external carbon is minimised while the nitrate discharge limits (based on both grab and composite samples) are met. The control system requires the measurement of the nitrate concentrations at the end of both the anoxic and the aerobic zones. Distinct from ordinary control systems, which typically minimise the variation in the controlled variables, the proposed control system essentially maximises the diurnal variation of the effluent nitrate concentration and through this maximises the use of influent COD for denitrification, thus minimising the requirement for external carbon source. Simulation studies using a commonly accepted simulation benchmark show that the controlled system consistently achieves the designated effluent quality with minimum costs. [References: 17]
机译:研究了预硝化生物废水处理系统中硝酸盐再循环和外部碳添加的集成控制。拟议的控制结构由四个反馈控制回路组成,这些回路以高度协调的方式控制硝酸盐的再循环和碳剂量的流动,以使外部碳的消耗量最小化,同时硝酸盐的排放限值(基于抓斗和复合样品)遇见。控制系统需要在缺氧和好氧区域的末端测量硝酸盐浓度。与通常将控制变量的变化减至最小的普通控制系统不同,拟议的控制系统实质上使污水中硝酸盐浓度的日变化最大,并由此最大程度地利用了进水COD进行反硝化,从而将对外部碳源的需求降至最低。使用公认的模拟基准进行的模拟研究表明,受控系统始终以最低的成本达到指定的废水质量。 [参考:17]

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