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Modeling urea biodegradation in activated sludge using combined respirometric-titrimetric measurements

机译:结合呼吸-滴定法模拟活性污泥中尿素的生物降解

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Urea biodegradation kinetics determination has been performed in the literature using a two-step nitrification model that was calibrated using on-line respirometric measurements. However, the model neglected the initial hydrolysis step that converts urea to carbon dioxide and ammonia nitrogen, and assumed constant carbon dioxide transfer rate (CTR), though it is inherently a nonlinear process which has an impact on the titrimetric modeling. Hence, in this paper, it is aimed to propose a complete two-step nitrification model for urea biodegradation paying attention to urea degradation pathway along with due consideration given for non-linear CTR process occurring in activated sludge system. Experiments were performed in a simple batch reactor equipped with respirometric and titrimetric set-up. Three different initial urea concentrations were added to the reactor for investigating the process kinetics. Proposed model was successfully calibrated with respirometric, titrimetric and combined respirometric-titrimetric measurements; and the estimated parameters were compared for model evaluation. Furthermore, the proposed model was validated with off-line ammonium, nitrite and nitrate measurements. The study revealed that urea was hydrolyzed at a faster rate in liquid phase. The maximum growth rates of the Nitrosomonas species and the Nitrobacter species were found to be 0.065-0.1 d~(-1) and 0.006-0.008 d~(-1) respectively.
机译:尿素生物降解动力学测定已在文献中使用两步硝化模型进行,该模型使用在线呼吸测定法进行了校准。但是,该模型忽略了将尿素转化为二氧化碳和氨氮的初始水解步骤,并假定了恒定的二氧化碳传输速率(CTR),尽管它本质上是一个非线性的过程,会对滴定模型产生影响。因此,在本文中,旨在提出一个完整的两步尿素生物降解硝化模型,该模型要注意尿素的降解途径,并适当考虑活性污泥系统中发生的非线性CTR过程。在配有呼吸测定法和滴定法装置的简单间歇反应器中进行实验。将三种不同的初始尿素浓度添加到反应器中,以研究过程动力学。所建议的模型已通过呼吸测量,滴定测量和结合呼吸-滴定测量成功进行了校准;并将估计的参数进行比较以进行模型评估。此外,提出的模型已通过离线铵,亚硝酸盐和硝酸盐测量得到了验证。研究表明,尿素在液相中的水解速度更快。硝化单胞菌和硝化细菌的最大生长速率分别为0.065-0.1 d〜(-1)和0.006-0.008 d〜(-1)。

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