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首页> 外文期刊>Journal of Environmental Engineering >Modeling Micro- and Nano-Bubble Stability and Treatment Mechanisms in Batch Reactors
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Modeling Micro- and Nano-Bubble Stability and Treatment Mechanisms in Batch Reactors

机译:批量反应器中的微型和纳米气泡稳定性和治疗机制

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Micro and nano bubbles have increased water treatment efficiency in laboratory and field experiments due to the elevated pressure inside small bubbles and their large specific surface area, which enhance mass transfer into surrounding water. Existing theoretical studies are limited to size dynamics and stability of (mostly) single bubbles or transport of stable bubbles through porous media. We present a theoretical modeling approach combining bubble generation, stability, and treatment reaction mechanisms in batch reactors. We consider bubble dynamics as quasi-steady compared to other reaction time-scales involved. For a single treatment gas, we demonstrate two regimes (stable bubbles or not) in agreement with previous work. The critical transition point into the stable bubble regime is defined in terms of a minimum treatment substance concentration and minimum stable bubble radius. The results are discussed through hypothetical examples and further validated using existing ozone nanobubble batch experiment data for butylated hydroxytoluene (BHT) remediation.
机译:微型和纳米气泡在实验室和现场实验中具有提高的水处理效率,由于小气泡内部的压力和其大的比表面积升高,从而增强了质量转移到周围水中。现有的理论研究仅限于通过多孔介质的尺寸动态和(大多数)单泡或稳定气泡的稳定性。我们提出了一种与间歇式反应器中的气泡产生,稳定性和治疗反应机制相结合的理论建模方法。与其他反应时间尺度相比,我们将泡沫动力学视为准稳定。对于单一的处理气体,我们兼顾了两个制度(稳定气泡或不)与以前的工作一致。根据最小处理物质浓度和最小稳定的气泡半径来定义稳定的泡沫方案中的临界过渡点。通过假设实施例讨论结果,并使用现有的臭氧纳米泡批次实验数据进行丁基化羟基甲苯(BHT)修复进一步验证。

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