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A critical comparison of extant batch respirometric and substrate depletion assays for estimation of nitrification biokinetics

机译:现有批次呼吸测定法和底物消耗测定法对硝化生物动力学估算的关键比较

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Estimation of nitrification biokinetics has been conducted using different batch techniques via measurement of nitrogen species or surrogates such as oxygen (respirometry). However, there are no reports that specifically compare kinetic parameters estimated from respirometry with those from direct nitrogen species measurements. In this study, we evaluated the ability of parameter estimates from isolated and optimally designed complete extant respirometric assays to describe concurrently obtained ammonia and nitrite depletion profiles. Additionally, we mapped the different parameter sets to steady-state bioreactor performance. Using multivariate analysis of variance, we found that estimates from respirometric and substrate depletion assays were predominantly statistically different at the 95% confidence level. The sensitivity of predicted stead-state nitrifying reactor performance to differences in parameter estimates was highest close to the limiting solids retention time (SRT). However, at characteristic nitrifying SRTs the predicted reactor performance using parameter estimates from respirometry and substrate depletion assays were in very close correspondence. Therefore, parameters estimated from extant respirometric assays can be used to adequately predict nitrifying reactor performance. Biotechnol. Bioeng. 2008;101: 62-72. (C) 2008 Wiley Periodicals, Inc.
机译:硝化生物动力学的估算已使用不同的批处理技术,通过测量氮的种类或替代物(例如氧气)(呼吸测定法)来进行。然而,没有报道将呼吸测量法估计的动力学参数与直接氮物种测量的动力学参数进行专门比较。在这项研究中,我们评估了从孤立和优化设计的完整现存呼吸测定法中参数估计值的能力,以描述同时获得的氨和亚硝酸盐消耗曲线。此外,我们将不同的参数集映射到稳态生物反应器性能。使用方差的多元分析,我们发现,在95%置信水平下,来自呼吸测定法和底物耗竭测定的估计值在统计学上主要不同。预测的稳态硝化反应器性能对参数估计值差异的敏感性最高,接近极限固体保留时间(SRT)。但是,在特征性硝化SRT时,使用来自呼吸测定法和底物耗竭试验的参数估计值预测的反应堆性能非常接近。因此,根据现存的呼吸测定法估计的参数可用于充分预测硝化反应器的性能。生物技术。生恩2008; 101:62-72。 (C)2008 Wiley期刊公司

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