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Cellulose-based carbon hollow fiber membranes for high-pressure mixed gas separations of CO2/CH4 and CO2/N-2

机译:基于纤维素的碳中空纤维膜,用于CO 2 / CH4和CO2 / N-2的高压混合气体分离

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Carbonized cellulose-based hollow fiber membranes were prepared by dry-wet spinning phase inversion method, followed by carbonization and evaluated in terms of gas separation performance for CO2/N-2 and CO2/CH4 mixtures, under flow conditions. Permeability and real selectivity were measured for both mentioned mixtures, in a temperature range of 25 degrees C to 60 degrees C, a differential pressure range of 8 bar(a) to 20 bar(a) and a CO2 concentration range from 5% v/v to 15% v/v. The highest yielding mixture selectivity values were 42 for CO2/N-2 at 10% v/v CO2, 25 degrees C & 8 bar(a) and around 150 for CO2/CH4 at the same conditions, whereas the respective CO2 permeabilities were 110 and 45 Barrer. Additionally, experiments of varying head pressure, while maintaining differential pressure, transmembrane pressure, at 8 bar(a), have revealed that CO2/N-2 separation factor can be further enhanced with real selectivity being raised to 55 and permeability to 180 at 20 bar head pressure. The same approach had negligible effect on CO2/CH4 separation. This is an important finding by taking into consideration that natural gas treatment, i.e. sweetening and purification processes, is energetically and economically convenient if it takes place under the conditions, where the NG stream is extracted from the wells, or after a decompression. Moreover, Process simulation indicates that a two-stage system using the developed carbon membranes is technologically feasible to produce 96% methane with a low methane loss of < 4%. Further improving membrane gas permeance can significantly reduce the specific natural gas processing cost which is dominated by the membrane-related capital cost.
机译:通过干湿纺丝相反转方法制备碳化纤维素的中空纤维膜,然后通过碳化,并在流动条件下,在CO 2 / N-2和CO 2 / CH 4混合物的气体分离性能方面进行评价。针对两种提到的混合物测量渗透性和实际选择性,在25℃至60℃的温度范围内,8巴(a)至20 bar(a)的差压范围为20 bar(a),并且CO 2浓度范围为5%v / v至15%v / v。在相同条件下,在10%v / v CO 2,20%V / V CO 2,25℃/ CH 4的CO 2 / CH 4,25摄氏度的22%,25℃,约150℃下,最高的产生混合物选择性值为42。相应的CO 2渗透率为110和45个禁区。另外,在8巴(a)处保持压差,跨膜压力,在8巴(a)的同时,具有不同的头部压力的实验表明,可以进一步增强CO 2 / N-2分离因子,并且使用真实的选择性升高到55并在20时渗透到180条头压力。同样的方法对CO 2 / CH 4分离具有可忽略的影响。这是考虑到天然气处理,即甜味和净化过程,在从井中提取的条件下发生Ng流或减压之后的情况下大力和经济地方便的重要发现。此外,过程模拟表明,使用开发的碳膜的两级系统在技术上是可行的,以生产96%甲烷,低甲烷损失为<4%。进一步改善膜气体渗透可以显着降低由膜相关资本成本主导的特定天然气处理成本。

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