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MOLECULAR SIEVING SELECTIVITY OF ACTIVE CARBONS AND ACTIVE CARBON FIBERS IMPROVED BY CHEMICAL VAPOUR DEPOSITION OF BENZENE

机译:苯化学气相沉积提高活性炭和活性炭纤维的分子筛选择性

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Modification of the pore size of several types of carbon adsorbents by chemical vapour deposition of carbon from benzene at 1000 K was examined. The carbons included commercial molecular sieve carbon (MSC), pitch based active carbon fiber (ACF), super and commercial active carbon (S-AC, AC). Greatly improved selectivity for the separation of CO2 and CH4 was achieved by this method for MSC and ACF. ACF is expected to exhibit rapid adsorption and desorption rates during molecular sieving separations. Carbon adsorbents which contain micropores of uniform size appear to have the highest potential for improvement in selectivity by CVD. Saturation of benzene CVD was observed in such carbons, indicating the deposition in the pore. In contrast, carbons which contain micropores in combination with large concentrations of mesopores lose adsorption capacity by filling of the mesopores with deposited carbon. The concentration of benzene and deposition temperature are key factors in achieving homogeneous carbon deposition on the pore wall but not on the outer surface which leads to improved selectivity. Copyright (C) 1996 Elsevier Science Ltd [References: 28]
机译:通过在1000 K下从苯化学气相沉积碳,研究了几种类型的碳吸附剂孔径的变化。碳包括商业分子筛碳(MSC),沥青基活性碳纤维(ACF),超级和商业活性碳(S-AC,AC)。通过这种方法,对于MSC和ACF,可大大提高分离CO2和CH4的选择性。预期ACF在分子筛分离过程中将表现出快速的吸附和解吸速率。包含均匀尺寸的微孔的碳吸附剂似乎具有通过CVD改善选择性的最高潜力。在此类碳中观察到苯CVD饱和,表明在孔中沉积。相反,包含微孔和高浓度的中孔的碳通过用沉积的碳填充中孔而失去吸附能力。苯的浓度和沉积温度是在孔壁上而不是在外表面上实现均匀碳沉积的关键因素,这会提高选择性。版权所有(C)1996 Elsevier Science Ltd [参考:28]

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