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A kinetic modeling for carbon metabolism in sequencing batch reactor under multiple aerobic/anoxic conditions

机译:需氧/缺氧条件下分批排序反应器中碳代谢的动力学模型

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In order to further investigate activated sludge system for better carbon metabolism and nitrogen removal with less energy consumption, a new kinetic model was established. The detailed description of the proposed model was introduced for understanding the mechanisms involved in the activated sludge system, especially simultaneous substrate storage and biomass growth (SSSG) processes and soluble microbial product generation. The evaluation of the proposed model was demonstrated by a lab-scale sequencing batch reactor (SBR) operated with three different sets, i.e., aerationon-aeration (set 1), non-aeration/aerationon-aeration (set 2), and alternating aerationon-aeration (set 3) processes. The purpose was to investigate carbon metabolism under multiple aerobic/anoxic conditions. The calibrated results showed quite an acceptable model fit to the on-line measured dissolved oxygen (DO) data for the three SBR sets. Predictions of the calibrated model were successfully confirmed using off-line analyses of soluble chemical oxygen demands (COD) and nitrogen dynamic variations, respectively. The simulated results showed that more SMP was generated under aerobic condition than that under anoxic condition, and more nitrate (S NO) consumption resulted in less SMP generation, i.e., approximately 7% and 57% less extra carbon source in sets 2 and 3 were required to remove 8% and 58% of S NO, respectively, compared with set 1. And the kinetics of SSSG process in the proposed model was indirectly validated by comparisons between experimental DO profiles and simulations. Therefore, the new model provides an effective technique for better optimizing the effluent COD and nitrogen with low energy cost in biological wastewater treatment plants.
机译:为了进一步研究活性污泥系统以更好的碳代谢和氮去除,同时降低能耗,建立了一个新的动力学模型。引入了对所提议模型的详细描述,以了解活性污泥系统所涉及的机制,特别是同时进行的底物存储和生物量生长(SSSG)过程以及可溶性微生物产物的产生。实验室规模的分批批量反应器(SBR)通过三个不同的装置(即曝气/非曝气(第1套),非曝气/曝气/非曝气(第2套))进行操作,证明了对所建议模型的评估,以及交替的充气/非充气(第3组)过程。目的是研究多种有氧/缺氧条件下的碳代谢。校准的结果表明,对于三个SBR组的在线测量的溶解氧(DO)数据,其模型拟合度非常令人满意。分别使用可溶性化学需氧量(COD)和氮动态变化的离线分析成功地确认了校准模型的预测。模拟结果表明,好氧条件下产生的SMP高于缺氧条件下产生的SMP,硝酸盐(S NO )消耗量越大,产生的SMP越少,即多余碳减少约7%和57%与第1组相比,第2组和第3组中的源分别需要去除8%和58%的S NO 。并且通过实验之间的比较间接验证了所提出模型中SSSG过程的动力学DO配置文件和模拟。因此,新模型提供了一种有效的技术,可以以较低的能源成本更好地优化废水中的化学需氧量和氮。

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