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Microporous Oil-Palm-Shell Activated Carbon Prepared by Physical Activation for Gas-Phase Adsorption

机译:物理活化制备气相吸附的微孔油棕壳活性炭

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摘要

Preparation, characterization, and evaluation of activated carbon from oil-palm shell, an abundant agricultural byproduct in some tropicla countries, were carried out. The effects of CO_2 activation conditions (i.e., activation temperature and hold time) on the characteristics of the activated carbon, namely, composition, porosity, hardness, and internal pore surface area, were investigated in order to optimize preparation parameters. To analyze the reaction kinetics, a random pore model was developed to determine pore development during the carbon-CO_2 reaction process. Adsorption tests showed that the activated carbons prepared from oil-palm shells were more suitable for gas-phase rather than liquid-phase applications. When SO_2 gas was used as teh adsorbate, a linear relationship between the specific pore surfacea area and the adsorptive capacity of the adsorbent was observed. This could be elucidated by the neutral (or slightly acidic) nature of the surface functional groups, as detected by Fourier transform infrared spectroscopy, on the oil-palm-shell activated carbon.
机译:进行了油棕壳中活性炭的制备,表征和评估,该油棕壳是一些热带国家的农业副产品。为了优化制备参数,研究了CO 2活化条件(即活化温度和保持时间)对活性炭特性即组成,孔隙率,硬度和内孔表面积的影响。为了分析反应动力学,建立了随机孔模型以确定碳-CO_2反应过程中的孔发展。吸附测试表明,由油棕壳制备的活性炭更适合气相而不是液相应用。当SO 2气体用作吸附物时,观察到比孔表面积与吸附剂的吸附容量之间的线性关系。这可以通过在油棕壳活性炭上通过傅立叶变换红外光谱法检测到的表面官能团的中性(或微酸性)性质来阐明。

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