The investigation of activated carbon by K2CO3 activation: Micropores- and macropores-dominated structure

大孔隙 微型多孔材料 活性炭 水银孔隙仪 吸附 比表面积 化学 化学工程 多孔性 打赌理论 体积热力学 煅烧 碳纤维 材料科学 有机化学 催化作用 介孔材料 多孔介质 复合材料 物理 量子力学 复合数 工程类
作者
Duy Anh Khuong,Kieu Trang Trinh,Yu Nakaoka,Toshiki Tsubota,Daisuke Tashima,Hong Nam Nguyen,Daisaku Tanaka
出处
期刊:Chemosphere [Elsevier BV]
卷期号:299: 134365-134365 被引量:75
标识
DOI:10.1016/j.chemosphere.2022.134365
摘要

In this study, the K2CO3 activation of bamboo was investigated in detail, and the structure and properties of the prepared activated carbons were tested for the feasibility of CO2 capture application and the potential for both ion and bacteria adsorption for use in the field of hazardous wastewater treatment. Activated carbons were produced with different activator ratios, from 0.5 to 6 according to the sample mass ratio. The ratio of H or O to C (H/C or O/C) increased with the increasing amount of K2CO3 added for the activation. The samples had a highly-porous microporous structure, in which the micropore volume was calculated to be 0.6 cm3 g-1 by the DR method of the CO2 adsorption isotherm at 298 K. The BET surface area and total pore volume estimated from the N2 adsorption isotherms at 77 K of the activated materials increased according to the increase of the K2CO3 impregnation ratio to a maximum value of 1802 m2 g-1 and 0.91 cm3 g-1, respectively. Moreover, the K2CO3-activated samples had a specific morphology, that is, macropores which are presumed to be derived from bubbles. The X-ray-CT images showed that the bubble-like structure is not only on the surface but also inside the samples. The results of gas adsorption methods, mercury porosimetry, and SEM showed the co-existence of micropores (<2 nm) and macropores (100-10,000 nm). The results highlighted the unique pore structure, that is, the coexistence of micropores and macropores that would contribute to forming solutions for carbon sequestration in the atmosphere and wastewater treatment.
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