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Simultaneous improvement in tensile strength and adsorption capacity of activated carbon fibers during stabilization and activation of acrylic fibers

机译:丙烯酸纤维稳定性和活化期间活性炭纤维的拉伸强度和吸附能力的同时提高

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摘要

Simultaneous effects of stabilization degree, activation temperature and activation stretching on the adsorption and mechanical properties of acrylic-based activated carbon fibers (ACFs) were studied. ACFs were prepared by the stabilization of the acrylic fibers with different conditions; subsequently, they were impregnated in the KOH solution and activated at three different temperatures under three distinct imposed stretches. Tensile strength index, aromatization index, elemental analysis and density were used to evaluate the degree of the stabilization of the oxidized acrylic fibers prior to activation. The optimum conditions that led to the fabrication of high iodine adsorption and tensile strength ACFs were the stabilization degree of 56.2%, the activation temperature of 800 degrees C, and the stretching of 1%. The experimental iodine number and tensile strength of ACFs in the mentioned conditions were about 865 mg/g and 423 MPa, respectively. The results of the BET analysis for the optimized sample showed a surface area of 561 m(2)/g with an average pore diameter of 2.7361 nm. Moreover, the obtained ACFs were well characterized by X-ray diffraction, Fourier-transform infrared spectroscopy, scanning electron microscope and CCL4 adsorption test. Simultaneous improvement in the tensile strength and the adsorption capacity could make them suitable for possible high performance applications.
机译:研究了稳定度,激活温度和伸展对丙烯酸类活性炭纤维(ACFS)吸附和力学性能的同时效果。通过用不同条件稳定丙烯酸纤维来制备ACFS;随后,将它们浸渍在KOH溶液中并在三个不同施加的拉伸下在三个不同的温度下活化。抗拉强度指数,芳族化指数,元素分析和密度用于评估激活前氧化丙烯酸纤维的稳定度。导致高碘吸附和拉伸强度ACF的最佳条件是稳定度为56.2%,活化温度为800℃,拉伸1%。上述条件下ACFS的实验碘和拉伸强度分别为约865mg / g和423MPa。优化样品的BET分析结果显示出561米(2)/ g的表面积,平均孔径为2.7361nm。此外,所获得的ACF通过X射线衍射,傅立叶变换红外光谱,扫描电子显微镜和CCL4吸附试验表征得很好。在拉伸强度和吸附容量的同时改善可以使它们适用于可能的高性能应用。

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