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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >The modification of pore size in activated carbon fibers by chemical vapor deposition and its effects on molecular sieve selectivity
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The modification of pore size in activated carbon fibers by chemical vapor deposition and its effects on molecular sieve selectivity

机译:化学气相沉积对活性炭纤维孔径的改变及其对分子筛选择性的影响

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Pore size control of a series of activated carbon fibers was attempted by chemical vapor deposition (CVD) of benzene to clarify the influence of the pore distribution on the development of molecular sieving ability. Weight increase by CVD was found to saturate at a certain level respective to the fiber, reflecting their surface areas. However, when saturation was obtained, the molecular sieving selectivity between CO, and CH, was induced only in the smaller surface area fibers, whereas the fibers with larger surface areas lost the adsorption activity for both gases. Straight micropores developed from the surface can be controlled in their slit size, by carbon deposition selectively onto their wall, if benzene molecules can get into the pore. In contrast, the size of micropores developed on the walls of mesopores in the fibers with large surface area are difficult to control since the carbon deposition continues until the whole wall of the mesopore is covered by the deposited carbon, which plugs the micropores. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 15]
机译:尝试通过苯的化学气相沉积(CVD)来控制一系列活性炭纤维的孔径,以阐明孔分布对分子筛分离能力发展的影响。发现通过CVD增加的重量相对于纤维在一定水平下饱和,反映了它们的表面积。然而,当达到饱和时,仅在较小表面积的纤维中引起了CO和CH之间的分子筛选择性,而具有较大表面积的纤维丧失了对两种气体的吸附活性。如果苯分子可以进入孔中,则通过有选择地在其壁上进行碳沉积,可以控制从表面形成的直的微孔的狭缝尺寸。相反,在具有大表面积的纤维中,在中孔壁上形成的微孔的尺寸难以控制,因为碳沉积持续直到中孔的整个壁被沉积的碳覆盖,从而堵塞了微孔。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:15]

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