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CONVERSION OF POLYACRYLONITRILE FIBERS TO ACTIVATED CARBON FIBERS - EFFECT OF ACTIVATION

机译:聚丙烯腈纤维向活性碳纤维的转化-活化作用

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摘要

Polyacrylonitrile (PAN)-based activated carbon fibers were developed with the idea of increasing their potential and efficiency in industrial applications. The PAN-based fibers were first oxidized in air in a continuous multistage stabilization process, and then subjected to a continuous, low temperature carbonization and activation treatment in a mixture of steam and argon. The effect of the activation condition on the specific surface area, elemental composition, as well as the morphological structure of activated carbon fibers was studied. The surface area of the carbon fibers increased remarkably after the steam activation. It was found that steam activation promoted the elimination of nitrogen from the fiber. The bulk oxygen content of the fibers increased upon activation, probably due to formation of carbon-oxygen functionalities on the surface of the activated carbon fibers. The surface oxygen level of activated carbon fibers was greater than the bulk analysis of oxygen. It was observed that activation decayed the order of the carbon structure. (C) 1996 John Wiley & Sons,Inc. [References: 18]
机译:聚丙烯腈(PAN)基活性炭纤维的开发具有增加其在工业应用中的潜力和效率的想法。 PAN基纤维首先在连续多阶段稳定化过程中在空气中氧化,然后在蒸汽和氩气的混合物中进行连续的低温碳化和活化处理。研究了活化条件对比表面积,元素组成以及活性炭纤维形态结构的影响。蒸汽活化后,碳纤维的表面积显着增加。发现蒸汽活化促进了纤维中氮的消除。活化后,纤维的总氧含量增加,这可能是由于在活化碳纤维表面上形成了碳-氧官能团。活性炭纤维的表面氧含量大于氧的本体分析。观察到活化破坏了碳结构的顺序。 (C)1996年John Wiley&Sons,Inc。 [参考:18]

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