Gas Transfer Kinetics of Pure Oxygen System

J. Mueller, T. Mulligan, D. D. Toro
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引用次数: 6

Abstract

A mathematical model is described which determines the gas and liquid phase of oxygen, nitrogen, and carbon dioxide concentrations along with the variation in gas flow and pH in a completely mixed, staged, pure oxygen system. Model verification was accomplished using existing field data. The model was then utilized to determine the effects of varying BOD loads and alkalinities on a previously designed system. Lower waste-water alkalinities and pHs not only resulted in lower mixed liquor pH values, but also lower dissolved oxygen concentrations. The respiratory quotient was seen to have a significant effect on the system. To obtain a desired DO level, the trade-off between increasing gas flow and aerator horsepower is presented.
纯氧系统的气体传递动力学
描述了一个数学模型,该模型确定了氧、氮和二氧化碳的气相和液相浓度,以及完全混合、分级、纯氧系统中气体流量和pH值的变化。利用现有的现场数据完成了模型验证。然后利用该模型确定不同的BOD负荷和碱度对先前设计的系统的影响。降低废水的碱度和pH值不仅会降低混合液的pH值,还会降低溶解氧浓度。呼吸商被认为对系统有显著的影响。为了获得理想的DO水平,在增加气体流量和曝气机马力之间进行了权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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