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Dissolved gas separation using the pressure drop and centrifugal characteristics of an inner cone hydrocyclone

机译:利用内锥式水力旋流器的压降和离心特性进行溶解气体分离

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Although compact separation by a hydrocyclone is popular in the chemical and petro-chemical industry, the separation of dissolved gas from continuous liquid in a hydrocyclone is rarely mentioned, and few investigations consider the gas solubility changes occurring with the cyclone flow. This work investigates dissolved carbon dioxide separation from water by an inner cone hydrocyclone. When the inlet mass flow is less than 1.2 m(3)/h, increasing the inlet mass flow could increase the separation efficiency. When the inlet mass flow is more than 1.2 m(3)/h, increasing the inlet mass flow will decrease the separation efficiency. An optimum inlet mass flow of 1.2 m(3)/h can provide the maximum separation efficiency of 40.2%. Turbulence simulations also assist in analyzing the flow pattern and the separation progress. (C) 2016 Published by Elsevier B.V.
机译:尽管在化学和石油化学工业中普遍使用水力旋流器进行紧密分离,但很少提及从水力旋流器中将溶解的气体与连续液体分离的方法,并且很少有研究认为气体的溶解度会随着旋风分离器的流动而发生变化。这项工作研究了内锥式水力旋流器从水中分离出的溶解二氧化碳。当入口质量流量小于1.2 m(3)/ h时,增加入口质量流量可能会提高分离效率。当入口质量流量大于1.2 m(3)/ h时,增加入口质量流量将降低分离效率。最佳的入口质量流量为1.2 m(3)/ h可以提供40.2%的最大分离效率。湍流模拟还有助于分析流型和分离过程。 (C)2016由Elsevier B.V.发布

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