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Comparative evaluation of particle separation efficiency based on carbon dioxide and air bubble sizes in flotation separation processes

机译:浮选过程中基于二氧化碳和气泡大小的颗粒分离效率的比较评估

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Micro-sized carbon dioxide gas bubbles can be applied as alternatives to air bubbles in flotation separation processes, which can reduce CO2 emissions as well as decrease energy consumption. CO2 and air bubbles were used as particle collectors in the flotation process to investigate and compare the collision efficiency and particle separation characteristics. This study measured bubble size distributions and simulated the single-collector collision (SCC) model that has been applied extensively to flotation processes. The diameter of the air bubbles was found to decrease as the saturator pressure increased, but the size of the CO2 bubbles increased when the pressure exceeded 151.99-202.65 kPa. When using CO2 bubbles as collectors to separate particles in water, the simulation results from the SCC model expressed in terms of bubble volume concentration (BVC) was related to the lower collision efficiency of CO2 bubbles, and the bubble number concentration (BNC) rather than the BVC to the effects of macrobubbles. The findings of this study suggest that the advantages of CO2 bubbles used as collectors in particle separations would be lower operating costs and reduced greenhouse gas emissions from water and wastewater treatment plants. (C) 2014 Elsevier B.V. All rights reserved.
机译:在浮选分离过程中,可以使用微细的二氧化碳气泡替代气泡,从而减少二氧化碳排放并降低能耗。浮选过程中使用二氧化碳和气泡作为颗粒收集器,以研究和比较碰撞效率和颗粒分离特性。这项研究测量了气泡的大小分布,并模拟了已广泛应用于浮选过程的单收集器碰撞(SCC)模型。发现气泡的直径随着饱和器压力的增加而减小,但是当压力超过151.99-202.65 kPa时,CO2气泡的大小增加。当使用CO2气泡作为收集器分离水中的颗粒时,以气泡体积浓度(BVC)表示的SCC模型的模拟结果与CO2气泡的碰撞效率较低有关,而气泡数浓度(BNC)而不是BVC对巨泡的影响。这项研究的结果表明,在颗粒分离中用作收集器的CO2气泡的优势在于可以降低运营成本并减少自来水厂和废水处理厂的温室气体排放。 (C)2014 Elsevier B.V.保留所有权利。

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