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Observation and mathematical description of the acceleration phenomenon in batch respirograms associated with ammonium oxidation

机译:铵氧化相关的批式呼吸记录中加速现象的观察和数学描述

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Two-step nitrification models are generally calibrated using short-term respirometric batch experiments. Important discrepancies appear between model predictions and experimental observations just after the pulse addition since a fast transient in the OUR profile is experimentally observed. Acceleration of the OUR appears ongoing between the substrate addition and attainment of the maximum OUR value. Among the several phenomena that could contribute to this observation, the most probable cause is the limitation of reducing equivalents required for maximal ammonia monooxygenase activity at the time of substrate addition. Ignoring acceleration would result in large parameter estimation errors from respirometric batch experiments. This work proposes a simple methodology to successfully describe (not to explain) the acceleration phenomenon estimating only two parameters. This methodology consists of introducing a Gaussian-like expression in the model.
机译:两步硝化模型通常使用短期呼吸批次实验进行校准。脉冲添加之后,由于在实验中观察到OUR曲线中的快速瞬变,因此模型预测与实验观察之间出现了重要差异。在底物添加和达到最大OUR值之间,OUR的加速似乎一直在进行。在可能有助于该观察的几种现象中,最可能的原因是减少底物添加时最大氨单加氧酶活性所需的当量减少的限制。忽略加速度会导致呼吸批次实验产生较大的参数估计误差。这项工作提出了一种简单的方法来成功描述(不解释)仅估计两个参数的加速现象。该方法包括在模型中引入类似高斯的表达式。

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