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Kinetics and fundamental mechanisms of protein removal by activated sludge: Hydrolysis of peptone to amino acids is the rate-determining step

机译:活性污泥去除蛋白质的动力学和基本机理:蛋白ept水解为氨基酸是决定速率的步骤

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Most ninhydrin reactants in primary effluent are proteins (polymers), and activated sludge (AS) bacteria can only directly take up monomers such as amino acids (AAs) which are produced from proteins by hydrolysis. Whether the hydrolysis of protein to amino acids by AS is the rate-determining step in the removal of protein was examined by comparing not only the removal rate of peptone and a mixture of free AAs but also the oxygen uptake rates of AS during the removal of these substrates, as well as analyzing the time courses of the concentration of each AA during the removal of these substrates. The removal rates of the AA mixture by AS were higher than those of peptone, and the oxygen uptake rates of AS during AA mixture removal were higher than those during peptone removal. The composition ratios of AAs during peptone removal were almost constant, whereas those of AAs markedly changed during AA mixture removal. The important difference between the two substrates used in this study (peptone and an AA mixture) is whether or not peptide bonds exist in the substrates. It was therefore verified that the hydrolysis of protein to AAs by AS was the rate-determining step in the removal of protein from municipal sewage. (C) 1998 IAWQ. Published by Elsevier Science Ltd. [References: 21]
机译:初级流出物中的大多数茚三酮反应物是蛋白质(聚合物),而活性污泥(AS)细菌只能直接吸收单体(例如氨基酸(AAs)),这些单体是由蛋白质通过水解产生的。通过不仅比较蛋白ept和游离AA混合物的去除速率,而且还比较了在去除蛋白质过程中AS的氧气吸收速率,来检查AS水解蛋白质水解为氨基酸的速率决定步骤。这些底物,以及在去除这些底物期间分析每种AA浓度的时间过程。 AS对AA混合物的去除率高于蛋白ept,而去除AA混合物时AS的吸氧率高于蛋白p。蛋白p去除过程中AA的组成比几乎恒定,而AA混合物去除过程中AA的组成比明显变化。本研究中使用的两种底物(蛋白and和AA混合物)之间的重要区别是底物中是否存在肽键。因此,证实了通过AS将蛋白质水解为AA是决定从城市污水中去除蛋白质的速率决定性步骤。 (C)1998 IAWQ。由Elsevier Science Ltd.发布[参考文献:21]

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