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The significance of denitrifying polyphosphate accumulating organisms in biological nutrient removal activated sludge systems

机译:去除生物养分的活性污泥系统中聚磷酸盐累积生物的反硝化意义

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In this paper the advantages and disadvantages of denitrifying PAOs (polyphosphate accumulating organisms) in conventional BNRAS (biological nutrient removal activated sludge) and external nitrification BNRAS (ENBNRAS) systems are evaluated, with experimental data exhibiting a range of anoxic P uptake from low (<10%) to very high (>60%). The results indicate that the specific denitrification rate of the PAOs on internally stored PHB COD is about 1/5th of that of the "ordinary" heterotrophic organisms on SBCOD, and the PAOs contribute little (maximum 20%) to the denitrification in BNRAS systems even when the anoxic P uptake is high (60% of the total P uptake). Considering the unpredictable nature of anoxic P uptake and the reduction in BEPR it causes compared with aerobic P uptake BEPR, it is concluded that anoxic P uptake does not add a significant advantage to the BNR system. [References: 34]
机译:本文评估了传统BNRAS(生物营养去除活性污泥)和外部硝化BNRAS(ENBNRAS)系统中反硝化PAOs(聚磷酸盐累积性生物)的优缺点,并通过实验数据显示了从低(< 10%)到很高(> 60%)。结果表明,内部存储的PHB COD上PAO的反硝化率约为SBCOD上“普通”异养生物的1/5,PAO对BNRAS系统中的反硝化贡献很小(最大20%)。当缺氧P吸收高时(占P吸收总量的60%)。考虑到缺氧P吸收的不可预测的性质以及与好氧P BE相比引起的BEPR降低,可以得出结论,缺氧P吸收不会为BNR系统带来明显的优势。 [参考:34]

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