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Applying real-time control to enhance the performance of nitrogen removal in CAST system

机译:应用实时控制来增强CAST系统中的脱氮性能

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A bench-scale reactor(72 L) red with domestic sewage, was operated more than 3 months with three operation modes; traditional mode, modified mode and real-time control mode, so as to evaluate effects of the operation mode on the system performance and to develop a feasible control strategy. Results obtained from fixed-time control study indicate that the variations of the pH and oxidation-reduction potential(ORP) profiles can represent dynamic characteristics of system and the cycle sequences can be controlled and optimized by the control points on the pH and ORP profiles. A control strategy was, therefore, developed and applied to real-time control mode. Compared with traditional mode, the total nitrogen(TN) removal can be increased by approximately 16 percent in modified mode and a mean TN removal of 92 percent was achieved in real-time control mode. Moreover, approximately 12.5 percent aeration energy was saved in real-time control mode. The result of this study shows that the performance of nitrogen removal was enhanced in modified operation mode. Moreover, the real-time control made it possible to optimize process operation and save aeration energy.
机译:带有生活污水的台式反应器(72升)运行了3个月以上,采用三种运行模式;传统模式,修改模式和实时控制模式,以评估操作模式对系统性能的影响,并制定可行的控制策略。固定时间控制研究的结果表明,pH和氧化还原电位(ORP)曲线的变化可以代表系统的动态特性,并且可以通过pH和ORP曲线上的控制点来控制和优化循环序列。因此,开发了一种控制策略并将其应用于实时控制模式。与传统模式相比,在修改模式下,总氮(TN)去除率可提高约16%,在实时控制模式下,平均TN去除率达到92%。此外,在实时控制模式下,可节省约12.5%的曝气能量。这项研究的结果表明,在改进的操作模式下,脱氮性能得到了提高。此外,实时控制还可以优化过程操作并节省曝气能量。

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