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Adsorption selective carbon membrane the for separation of O2/N2 and C1-C4 Hydrocarbon/N2

机译:吸附选择性碳膜分离O2 / N2和C1-C4烃/ N2

摘要

In this study, adsorption selective carbon membranes were developed using cellulose acetate as carbon precursor. The membranes were used for the separation of C1-C4 hydrocarbon and O2/N2. The carbon membranes were prepared via pyrolysis process using microfiltration ceramic membranes at different temperatures of 300 oC, 325 oC, 350 oC, 400 oC, 450 oC, and 500 oC under nitrogen (N2) flow rate maintained at 200 ml/min. The membranes were then further subjected to oxidative treatments at the temperatures between 150 oC to 400 oC with an interval of 50 oC. Results showed that the pyrolysis temperature played an important role in determining the morphology of the carbon membranes. As the pyrolysis temperature increased, more pores with smaller diameter were formed. As a result, the permeability of the permeating gases reduced. Results also showed that, for the separation of O2/N2 the highest selectivity of 3.92 was obtained using the carbon membrane prepared at 400 oC. The same membrane was then further subjected to an oxidation temperature at 300 oC. The membrane was used for the separation of single and binary gas. For single gas separation, the selectivities for, C2H6/N2, C3H8/N2, and n-C4H10/N2 were 2.52, 2.44 and 2.35, resepectivly. For the binary gas experiment, the selectivities for C2H6/N2, C3H6/N2 , and n-C4H10/N2 obtained were 3.3, 14.4, and 26.05, respectively.
机译:在这项研究中,使用乙酸纤维素作为碳前体开发了吸附选择性碳膜。膜用于分离C1-C4烃和O2 / N2。碳膜是通过使用微滤陶瓷膜在300°C,325°C,350°C,400°C,450°C和500°C的不同温度下通过微滤陶瓷膜进行热解工艺制得的,并且氮气(N2)流速保持在200 ml / min。然后将膜进一步在150 oC至400 oC之间的温度下以50 oC的间隔进行氧化处理。结果表明,热解温度在确定碳膜的形态方面起着重要作用。随着热解温度的升高,形成了更多的直径较小的孔。结果,渗透气体的渗透性降低。结果还表明,对于O2 / N2的分离,使用在400 oC制备的碳膜可获得3.92的最高选择性。然后将同一膜进一步置于300 oC的氧化温度下。该膜用于分离单一气体和二元气体。对于单一气体分离,C2H6 / N2,C3H8 / N2和正C4H10 / N2的选择性分别为2.52、2.44和2.35。对于二元气体实验,获得的C2H6 / N2,C3H6 / N2和n-C4H10 / N2的选择性分别为3.3、14.4和26.05。

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