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Purification of Natural Gas by Using Carbon Molecular Sieve Membrane

机译:使用碳分子筛膜纯化天然气

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Carbon molecular sieve membrane(CMSM)is the promising candidate for natural gas purification because of its excellent stability,per-selectivity and permeability.However,morphological design of CMSM is very important for the specific application.In this project,two CMSM samples were synthesized at different pyrolytic conditions and examined for separation of N2/CH4 gas pair.Adsorption and permeation experiments were conducted to examine the separation performance of each membrane sample.At the ambient conditions,a perm-selectivity of~6 was found for(N2/CH4)pair while it is~30 for(CO2/N2)pair on the membrane pyrolyzed at the lower pyrolytic temperature of 800°C.When pyrolytic temperature is increased to 1000°C,however,these two selectivity values are changed to~1.5 (decrease)and~100(increase),respectively.Analysis revealed that both surface diffusion and molecular sieving play important roles in the overall gas permeation mechanisms,which result in the abnormal behaviors in the selectivities of different gas molecules.It is concluded that the variation of pore size and thickness are critical for the design of surface flow selective carbon molecular sieve membranes.
机译:碳分子筛膜(CMSM)是天然气纯化的有希望的候选者,因为其优异的稳定性,每种选择性和渗透性。无论何种,CMSM的形态学设计对于特定应用非常重要。在该项目中,合成了两个CMSM样品在不同的热解条件下,进行N 2 / CH 4气体的分离。进行吸收和渗透实验以检查每个膜样品的分离性能。环境条件,发现〜6的渗透选择性(N2 / CH4 )对〜30(CO 2 / N 2)对膜上的〜30〜30°Cyrolytic在800℃的低温温度下热解至800℃。然而,当热解温增加到1000℃时,这两个选择性值改变为〜1.5(减少)和〜100(增加)。分析显示,表面扩散和分子筛在整体气体渗透机制中起重要作用,这导致Selectivi中的异常行为不同气体分子的关系。得出结论是孔径和厚度的变化对于表面流动选择性碳分子筛膜设计至关重要。

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