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Hydraulic method of controlling solids retention time in step-feed biological nitrogen removal process

机译:分步进料生物脱氮过程中控制固体保留时间的液压方法

摘要

Controlling of solids retention time (SRT) in the activated sludge process is critical for ensuring effective wastewater treatment. Because of the disadvantages of conventional control methods, the hydraulic method of controlling SRT was improved in this study and applied into the step-feed biological nitrogen removal process. After the application of the hydraulic control method, conventional SRT changed from 17.67 to 19.08 days and hydraulic SRT was constant at a desired 20 days. Hydraulic control of SRT simplified process control, and produced good effluent quality where the total nitrogen removal efficiency with four stages ascended from 72.6 to 85%. Variations of hydraulic SRT under different influent wastewater strength and flow rates were investigated, and the results showed that a relative constant SRT value could be maintained easily. The feasibilities of applying the hydraulic method of controlling SRT in step-feed biological nitrogen removal process with different operational modes, including different stage numbers processes, different influent flow rate distributions, and volumes in each stage and different volume ratios of the anoxic zone to the aerobic in each stage, were verified and the results were satisfactory. Under constant SRT the total nitrogen removal efficiency of the step-feeding process with three, four, and five stages was 80, 85, and 95%, respectively.
机译:控制活性污泥工艺中的固体保留时间(SRT)对于确保有效的废水处理至关重要。由于常规控制方法的缺点,本研究改进了控制SRT的液压方法,并将其应用于分步进料生物脱氮工艺中。在采用液压控制方法之后,常规的SRT从17.67天更改为19.08天,并且液压SRT保持在所需的20天不变。 SRT的液压控制简化了过程控制,并产生了良好的废水质量,其中四个阶段的总氮去除效率从72.6提高到85%。研究了不同进水废水强度和流量下水力SRT的变化,结果表明可以很容易地保持相对恒定的SRT值。在不同操作模式下,采用水力控制SRT的方法来分步进料生物脱氮的可行性,包括不同的阶段编号过程,不同的进水流速分布,每个阶段的体积以及缺氧区与废水的不同体积比。在每个阶段进行有氧运动,均得到验证,结果令人满意。在恒定的SRT下,分三阶段,四阶段和五阶段进料的总脱氮效率分别为80%,85%和95%。

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