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Influence of relative air/water flow velocity on oxygen mass transfer in gravity sewers

机译:相对空气/水流速对重力下水道氧气传递的影响

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摘要

Problems related to hydrogen sulfide may be serious for both network stakeholders and the public in terms of health, sustainability of the sewer structure and urban comfort. H2S emission models are generally theoretical and simplified in terms of environmental conditions. Although air transport characteristics in sewers must play a role in the fate of hydrogen sulfide, only a limited number of studies have investigated this issue. The aim of this study was to better understand H2S liquid to gas transfer by highlighting the link between the mass transfer coefficient and the turbulence in the air flow and the water flow. For experimental safety reasons, O-2 was taken as a model compound. The oxygen mass transfer coefficients were obtained using a mass balance in plug flow. The mass transfer coefficient was not impacted by the range of the interface air-flow velocity values tested (0.55-2.28 m.s(-1)) or the water velocity values (0.06-0.55 m.s(-1)). Using the ratio between k(L,O2) to k(L,H2S), the H2S mass transfer behavior in a gravity pipe in the same hydraulic conditions can be predicted.
机译:与硫化氢有关的问题可能严重用于网络利益攸关方和公众在卫生方面,下水道结构的可持续性和城市舒适性。 H2S发射模型通常在环境条件方面是理论和简化的。虽然下水道的空气传输特性必须在硫化氢的命运中发挥作用,但只有有限数量的研究已经调查了这个问题。本研究的目的是通过突出传质系数与空气流动中的湍流与水流之间的链接更好地了解H 2 S液体至气体传递。出于实验安全原因,将O-2作为模型化合物。使用塞流中的质量平衡获得氧气传质系数。传质系数不会受到测试的界面气流速度值的范围(0.55-2.28m,(-1))或水速度值(0.06-0.55米(-1))。使用K(L,O2)至K(L,H2S)之间的比率,可以预测相同液压条件中的重力管中的H2S质量传递行为。

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