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Tailoring micro-mesoporosity in activated carbon fibers to enhance SO2 catalytic oxidation

机译:调整活性炭纤维中的微介孔率以增强SO2催化氧化

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摘要

Enhanced SO2 adsorption of activated carbon fibers is obtained by tailoring a specific micro-mesoporous structure in the fibers. This architecture is obtained via metal catalytic activation of the fibers with a novel precursor, cobalt naphthenate, which contrary to other precursors, also enhances spinnability and carbon fiber yield. In the SO2 oxidation, it is demonstrated that the combination of micropores and large mesopores is the main factor for an enhanced catalytic activity which is superior to that observed in other similar microporous activated carbon fibers. This provides an alternative way for the development of a new generation of catalytic material.
机译:通过在纤维中定制特定的微介孔结构,可以提高活性炭纤维对SO2的吸附能力。这种结构是通过用新颖的前体环烷酸钴对纤维进行金属催化活化而获得的,与其他前体相反,环烷酸钴还增强了可纺性和碳纤维产率。在SO 2氧化中,证明了微孔和大中孔的组合是增强催化活性的主要因素,该催化活性优于在其他类似的微孔活性炭纤维中观察到的。这为开发新一代催化材料提供了另一种方法。

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