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Pore Size and Adsorptive Capacity of Unburned Carbon Affected by Gasification with Carbon Dioxide

机译:二氧化碳气化对未燃烧碳的孔径和吸附能力的影响

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Gasification of unburned carbon by using CO_2 gas at temperatures of 950-1100℃ was performed, in order to modify the pore size distribution and adsorptive capacity of the carbon. Equipments such as N_2 adsorption apparatus, mercury pore size analyzer, and SEM were used, where yield, specific surface area and methylene blue number for adsorptive capacity, pore size, and appearance of the carbon were analyzed. Results show that gasification of unburned carbon produces larger adsorptive capability as well as a larger specific surface area. While reacting with CO_2 at 1100℃ for 45 min, the methylene blue numbers reach to 54-154 mg/g, and the specific surface areas reach to 113-235 m~2/g, which signify the actual utility. All carbons in gasification form new pores in a mutual size approximately 0.1-0.01 μm, whose majority affects the adsorptive capacity and specific surface area of the carbon. Besides, their group appearance complies with the obvious flow-like pattern, containing carbon ingredients with various degrees of crystallinity in the surface of unburned carbon. The new pore, conclusively, forms from the- lower crystalline carbon ingredient that gasified with CO_2 earlier, in the flow-like pattern.
机译:为了改变碳的孔径分布和吸附能力,在950〜1100℃的温度下利用CO_2气对未燃烧碳进行了气化。使用诸如N_2吸附设备,汞孔径分析仪和SEM的设备,其中分析了产率,比表面积和对吸附能力,孔径和碳的外观的亚甲基蓝数。结果表明,未燃烧碳的气化产生更大的吸附能力以及更大的比表面积。在1100℃与CO_2反应45min时,亚甲基蓝数达到54-154 mg / g,比表面积达到113-235 m〜2 / g,表明其实用性。气化过程中的所有碳均形成新孔,它们的相互尺寸约为0.1-0.01μm,其大部分影响碳的吸附能力和比表面积。此外,它们的组外观符合明显的流状图案,在未燃烧碳的表面含有不同程度的结晶度的碳成分。最终,新的孔隙由较低的结晶碳成分形成,该成分较早地与CO_2气化了,呈流动状。

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