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Porosity characteristics and pore developments of various particle sizes palm kernel shells activated carbon (PKSAC) and its potential applications

机译:不同粒径棕榈仁壳活性炭(PKSAC)的孔隙率特征和孔隙发展及其潜在应用

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摘要

The adsorption behaviour and the micro- and mesopore size distributions of commercial palm kernel shell activated carbons (PKSAC) and other commercial activated carbon are characterized. The results showed that PKSAC are predominantly microporous materials, where micropores account 68–79% of total porosity. On the other hand, commercial activated carbons: Norit SX Plus, Calgon 12×40, and Shirasagi “A” activated carbons contained high mesopore fraction ranging from 33 to 52%. The analysis showed that the degree of mesoporosity of PKSAC is increased steadily with the decrease of particle size. This is due to the presence of channels interconnect the smaller pores in the interior of smaller particle size PKSAC. The smaller size PKSAC particle that is highly mesoporous has preformed better on the adsorption of larger molecules such as methylene blue. On the other hand, bigger size PKSAC particle has better performance on the adsorption of smaller adsorbates such as iodine.
机译:表征了商业行为的棕榈仁壳活性炭(PKSAC)和其他商业活性炭的吸附行为以及微孔和中孔尺寸分布。结果表明,PKSAC主要为微孔材料,其中微孔占总孔隙度的68–79%。另一方面,商用活性炭:Norit SX Plus,Calgon 12×40和Shirasagi“ A”活性炭含有33%至52%的高介孔率。分析表明,随着颗粒尺寸的减小,PKSAC的介孔度逐渐增加。这是由于在较小粒径的PKSAC内部存在连通较小孔的通道的缘故。高度介孔的较小尺寸的PKSAC颗粒在吸附较大分子(如亚甲基蓝)时表现更好。另一方面,较大尺寸的PKSAC颗粒对较小的被吸附物(如碘)的吸附性能更好。

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