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ESTIMATING OXYGEN TRANSFER KLa, SOTE AND AIR FLOW REQUIREMENTS IN FINE BUBBLE DIFFUSED AIR SYSTEMS

机译:估算氧气转移KLA,在精细气泡扩散空气系统中的Sote和空气流量要求

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Oxygen demand in aerated activated sludge reactors varies with time, necessitating a varying oxygen supply rate to maintain a desired dissolved oxygen (DO) concentration. This paper demonstrates how diffuser performance in fine bubble aeration systems can be modeled, accounting for diffuser density, and changing SOTE with air flow per diffuser. The peaks and minimums in different zones of an activated sludge system usually will not be coincident, so it is difficult to accurately estimate total air requirements, as well as time-varying requirements. The approach in this paper overcomes these problems through quantifying (1) the change in oxygen mass transfer coefficient (KLa) with changing air flow in each zone, and (2) accounting for different diffuser densities. If this modeling approach is incorporated in a process simulator that quantifies time-and-space variations in oxygen demand, then accurate estimates of time-varying air supply in different zones can be estimated, and hence more realistic estimates of total air supply needs. Also, it allows a comprehensive analysis of the interaction between diffuser density and oxygen transfer efficiency for the optimal design of aeration systems.
机译:在充气活性污泥反应器中的氧气需求随时间而变化,需要不同的氧气供应速率,以保持所需的溶解氧(DO)浓度。本文展示了可以建模细泡通气系统中的扩散器性能,占扩散器密度,以及每个漫射器的空气流量的转换。不同区域的峰值和最小区域的活性污泥系统通常不会一致,因此难以准确估计总空气要求,以及时变要求。本文中的方法通过量化(1)氧气传质系数(KLA)的变化来克服了这些问题,随着每个区域的变化空气流动,以及(2)核对不同的扩散密度。如果该模拟方法结合在流程模拟器中,则量化氧需求的时间和空间变化,则可以估计不同区域中的时变空气供应的准确估计,因此对总供气需求的更现实估计。而且,它允许全面分析扩散器密度与曝气系统最佳设计的氧气转移效率之间的相互作用。

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