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首页> 外文期刊>The Korean journal of chemical engineering >Optimal strategies of fill and aeration in a sequencing batch reactor for biological nitrogen and carbon removal
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Optimal strategies of fill and aeration in a sequencing batch reactor for biological nitrogen and carbon removal

机译:顺序分批反应器中用于生物脱氮除碳的最佳填充和曝气策略

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摘要

A modified version of the IAWQ activated sludge model No. 1 (ASM 1) is adopted for the simulation of a sequencing batch reactor (SBR) to optimize the removal of nitrogen (T-N) and organic matters (COD) from waste-water. Since the removal of nitrogen requires both aerobic nitrification and anaerobic denitrification, we seek to find the optimal strategies of substrate fill and aeration. Substrate filling strategy critically influences the removal efficiency of T-N and COD; one fast discrete fill in the beginning of a cycle leads to the best result, while a slow continuous fill results in poor nitrification. In addition, the total aeration time is more important for the removal efficiency than the aeration frequency. A short aeration is beneficial for T-N removal, while a long aeration is beneficial for COD removal as expected. As a result, there is an optimal condition of aeration for the simultaneous removal of T-N and COD.
机译:IAWQ 1号活性污泥模型(ASM 1)的改进版本被用于模拟顺序批处理反应器(SBR),以优化废水中氮(T-N)和有机物(COD)的去除。由于去除氮需要好氧硝化和厌氧反硝化,因此我们寻求找到最佳的底物填充和通气策略。基质填充策略严重影响T-N和COD的去除效率;在循环开始时进行一次快速的离散填充可获得最佳结果,而缓慢的连续填充会导致硝化效果差。另外,总曝气时间对于去除效率比曝气频率更重要。短期曝气有利于T-N的去除,而长期曝气有利于COD的去除。结果,存在同时去除T-N和COD的最佳曝气条件。

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