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Effect of ship tilting and motion on amine absorber with structured-packing for CO2 removal from natural gas

机译:船舶倾斜和运动对胺气吸收器结构包装的影响,以去除天然气中的二氧化碳

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A gas-liquid Eulerian porous media computational fluid dynamics (CFD) model was developed for an absorber with structured packing to remove CO2 from natural gas by mono-ethanol-amine (MEA). The three-dimensional geometry of the amine absorber with Mellapak 500.X was constructed to investigate the effect of the tilting and motion experienced on ships and barges for offshore plants. The momentum equation included porous resistance, gas-liquid momentum exchange, and liquid dispersion to replace structured-packing by porous media. The mass equation involved mass transfer of CO2 gas into MEA solution, and one chemical reaction. Parameters of the CFD model were adjusted to fit experimental data measured in the CO2-MEA system. As the tilting angle increased, the liquid holdup and effective interfacial area decreased and CO2 removal efficiency was lowered. The uniformity of liquid holdup deteriorated by 10% for a 3 degrees static tilting, and a rolling motion with 4.5 degrees amplitude and 12 s period, respectively. (c) 2015 American Institute of Chemical Engineers
机译:针对具有结构填料的吸收塔,开发了一种气液欧拉多孔介质计算流体动力学(CFD)模型,以通过单乙醇胺(MEA)从天然气中去除CO2。使用Mellapak 500.X构建胺吸收器的三维几何形状,以研究倾斜和运动对海上工厂的船舶和驳船的影响。动量方程式包括多孔阻力,气液动量交换和液体分散,以取代多孔介质的规整填料。质量方程涉及将CO2气体传质到MEA溶液中以及一个化学反应。调整CFD模型的参数以适合在CO2-MEA系统中测量的实验数据。随着倾斜角度的增加,液体滞留量和有效界面面积减小,CO 2去除效率降低。对于3度静态倾斜和4.5度振幅和12 s周期的滚动运动,持液率的均匀性分别降低了10%。 (c)2015美国化学工程师学会

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