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Preparation Surface and Pore Structure of High Surface Area Activated Carbon Fibers from Bamboo by Steam Activation

机译:蒸汽活化竹制高表面积活性炭纤维的制备表面和孔结构

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摘要

High surface area activated carbon fibers (ACF) have been prepared from bamboo by steam activation after liquefaction and curing. The influences of activation temperature on the microstructure, surface area and porosity were investigated. The results showed that ACF from bamboo at 850 °C have the maximum iodine and methylene blue adsorption values. Aside from the graphitic carbon, phenolic and carbonyl groups were the predominant functions on the surface of activated carbon fiber from bamboo. The prepared ACF from bamboo were found to be mainly type I of isotherm, but the mesoporosity presented an increasing trend after 700 °C. The surface area and micropore volume of samples, which were determined by application of the Brunauer-Emmett-Teller (BET) and t-plot methods, were as high as 2024 m2/g and 0.569 cm3/g, respectively. It was also found that the higher activation temperature produced the more ordered microcrystalline structure of ACF from bamboo.
机译:高表面积的活性炭纤维(ACF)是由竹子在液化和固化后通过蒸汽活化而制备的。研究了活化温度对显微组织,表面积和孔隙率的影响。结果表明,在850°C的竹炭中,ACF具有最大的碘和亚甲基蓝吸附值。除石墨碳外,酚和羰基是竹子活性炭纤维表面上的主要功能。发现用竹子制得的ACF主要是等温线的I型,但介孔率在700°C后呈上升趋势。通过使用Brunauer-Emmett-Teller(BET)和t绘图方法确定的样品表面积和微孔体积分别高达2024 m 2 / g和0.569 cm < sup> 3 / g。还发现,较高的活化温度产生了来自竹的ACF的更有序的微晶结构。

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