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Surfactant effects on alpha factors in full-scale wastewater aeration systems

机译:表面活性剂对大规模废水曝气系统中α因子的影响

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Aeration is an essential process in the majority of wastewater treatment processes, and accounts for the largest fraction of plant energy costs. Aeration systems can achieve wastewater oxygenation by shearing the surface (surface aerators) or releasing bubbles at the bottom of the tank (coarse- or fine-bubble aerators). Surfactants accumulate on gas-liquid interfaces and reduce mass transfer rates. This reduction in general is larger for fine-bubble aerators. This study was conducted to evaluate mass transfer effects on the characterization and specification of aeration systems in clean and process water conditions. Tests at different interfacial turbulence regimes were analysed, showing higher gas transfer depression for lower turbulence regimes. Higher turbulence regimes can offset contamination effects, at the expense of operating efficiency. This phenomenon is characteristic of surface aerators and coarse bubble diffusers and is here discussed. The results explain the variability of a factors measured at small scale, due to uncontrolled energy density. Results are also reported in dimensionless empirical correlations that describe mass transfer as a function of physiochemical and geometrical characteristics of the aeration process.
机译:曝气是大多数废水处理过程中必不可少的过程,占工厂能源成本的最大部分。曝气系统可通过剪切表面(表面曝气器)或在水箱底部释放气泡(粗气泡或细气泡曝气器)来实现废水氧化。表面活性剂积聚在气液界面上并降低了传质速率。通常,对于细气泡曝气器,这种减小更大。进行这项研究以评估传质对清洁和工艺用水条件下曝气系统的特性和规格的影响。分析了在不同界面湍流状态下的测试,结果表明,较低湍流状态下的气体输送抑制较高。较高的湍流状态可以抵消污染影响,但会降低运行效率。这种现象是表面曝气器和粗糙气泡扩散器的特征,在此进行讨论。结果解释了由于不受控制的能量密度,小规模测量的因素的变异性。还以无量纲的经验相关性报道了结果,这些相关性将传质描述为曝气过程的物理化学和几何特征的函数。

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