Lee Jin-Young, Lee Byeong-Hoon, Chung Dong-Chul, Kim Byung-Joo
Material Application Research Institute, Jeonju University, Jeonju 55069, Republic of Korea.
Convergence Research Division, Korea Carbon Industry Promotion Agency (KCARBON), Jeonju 54853, Republic of Korea.
Materials (Basel). 2023 Aug 15;16(16):5625. doi: 10.3390/ma16165625.
In this study, the activated carbon was prepared with superior CO selective adsorption properties using walnut shells, a biomass waste, as a precursor. The activations were conducted at various times using the microwave heating technique in a steam atmosphere. The surface morphology and chemical composition of activated carbon were analyzed using a scanning electron microscope and energy-dispersive X-ray spectroscopy. The textural properties were investigated using the N/77K isothermal method, and the structural characteristics were examined using X-ray diffraction analysis. The CO and H adsorption properties of activated carbon were analyzed using a thermogravimetric analyzer and a high-pressure isothermal adsorption apparatus, respectively, under atmospheric and high-pressure conditions. Depending on the activation time, the specific surface area and total pore volume of the activated carbon were 570-690 m/g and 0.26-0.34 cm/g, respectively. The adsorption behaviors of CO of the activated carbon were different under atmospheric and high-pressure conditions. At atmospheric pressure, a significant dependence on micropores with diameters less than 0.8 nm was observed, whereas, at high pressure, the micropores and mesopores in the range of 1.6-2.4 nm exhibited a significant dependence. However, H adsorption did not occur at relatively low pressures. Consequently, the prepared activated carbon exhibited superior selective adsorption properties for CO.
在本研究中,以生物质废弃物核桃壳为前驱体制备了具有优异CO选择性吸附性能的活性炭。在蒸汽气氛中使用微波加热技术在不同时间进行活化。使用扫描电子显微镜和能量色散X射线光谱仪分析活性炭的表面形态和化学成分。采用N/77K等温线法研究织构性质,并用X射线衍射分析考察结构特征。分别在常压和高压条件下,使用热重分析仪和高压等温吸附装置分析活性炭对CO和H的吸附性能。根据活化时间,活性炭的比表面积和总孔体积分别为570 - 690 m²/g和0.26 - 0.34 cm³/g。活性炭对CO的吸附行为在常压和高压条件下有所不同。在常压下,观察到对直径小于0.8 nm的微孔有显著依赖性,而在高压下,1.6 - 2.4 nm范围内的微孔和中孔表现出显著依赖性。然而,在相对较低的压力下没有发生H吸附。因此,制备的活性炭对CO表现出优异的选择性吸附性能。