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Application of Hollow Fiber Membrane Contacting System for CO2/CH4 Separation

机译:中空纤维膜接触系统进行CO2 / CH4分离

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Carbon dioxide separation using membrane based contacting system is a reliable alternative to traditional gas absorbent techniques such as wet scrubbers.The main objective of this research was to design,develop and implement a hollow fiber membrane based contactor system to absorb and separate CO2 from CH4 in a simulated flare gas stream.Gas-liquid contacting system was constructed using microporous polytetrafluoroethylene(PTFE)hollow fibers as a highly hydrophobic membrane.The module used for the experimental studies has 51 mm diameter and 200 mm effective length.The membrane module had the packing density of 60 % and the PTFE hollow fiber being employed in this module had the mean pore size of 0.48 μm.Experiments conducted in a laboratory-scale plant fed with a simulated flare gas mixture containing 2.5 % of CO2 balanced with CH4 which could produce varying concentrations of inlet gas using mass flow controller.CO2 separation experimentation studies were performed and effect of operational variables on separation efficiency of the system has been studied.In order to optimize the gas separation performance of the membrane module,effects of gas and liquid flow rates,absorbent-phase concentration,and nature of scrubbing liquid were examined.The absorption efficiency of deionized-water and aqueous solutions of sodium hydroxide(NaOH)and diethanolamine(DEA)as the physical and chemical absorbents has been compared.Results indicated that increasing the flow rate and concentration of scrubbing liquid can enhance the separation efficiency; however,increasing the flow rates of the gas-phase has a negative impact on the CO2 absorption performance of the system.The traditional CO2 separation process suffers from many limitations,such as high capital and operational costs,and potential of equipment corrosion.Membrane processes offer attractive opportunities for gas treatment applications including removal of CO2,H2S,and SO2 from flare gas mixtures.This technology offers a variety of practical benefits including low energy and operation costs and at the same time it can help to mitigate the adverse health effects associated with burning the waste gases.
机译:使用基于膜的接触系统的二氧化碳分离是传统气体吸收技术的可靠替代方案,如湿式洗涤器。本研究的主要目的是设计,开发和实施基于中空纤维膜的接触器系统,以吸收和分离CH4中的CO2使用微孔聚四氟乙烯(PTFE)中空纤维作为高度疏水膜构建模拟的闪光气流。用于实验研究的模块直径为51毫米,有效长度为200毫米。膜组件有包装在该模块中使用的60%和PTFE中空纤维的密度具有0.48μm的平均孔径。在饲喂含有2.5%CO 2的模拟闪光气体混合物中进行的实验室规模植物中进行的实验性,其可以产生不同的CH4使用质量流量控制器的入口气体浓度。进行Co2分离实验研究和歌剧的影响研究了系统的分离效率的变量。为了优化膜组件的气体分离性能,检查气体和液体流速的影响,吸收相浓度,吸收液体的性质。吸收效率比较了物理和化学吸收剂的氢氧化钠(NaOH)和二乙醇胺(DEA)的去离子水和水溶液。结果表明,提高洗涤液的流速和浓度可以提高分离效率;然而,增加气相的流速对系统的二氧化碳吸收性能产生负面影响。传统的二氧化碳分离过程遭受许多限制,例如高资本和运营成本,以及设备腐蚀的潜力.Membrane过程为气体处理应用提供有吸引力的气体处理应用机会,包括从闪光气体混合中除去CO2,H2S和SO2。该技术提供了各种实用益处,包括低能量和运营成本,同时它可以帮助减轻相关的不利健康影响燃烧废气。

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