Optimization of Activated Carbons Prepared from Parinari macrophylla Shells

D. B. M. Siragi, D. Desmecht, H. Hima, Ousmaila Sanda Mamane, I. Natatou
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引用次数: 1

Abstract

Plant matter constitutes an important source for producing carbonaceous materials. This work deals with the preparation of active carbons from shells of Parinari macrophylla (agricultural waste in Niger). Physical, chemical and mixed activations are considered. Several parameters of preparation are optimized, as the nature of the activation gas (N2 or CO2, dry and wet), the concentration of the activating agent (H3PO4), the time of impregnation and the pyrolysis temperature program. The active carbons are characterized through their iodine numbers, their specific surface areas and their porous volumes. Active carbons, produced from shells of Parinari macrophylla display iodine numbers up to 599 mg I2/g and specific surface areas up to 727 m2/g. They also show microporous characteristics, with a mean pore diameter, usually, lower than 20 A and a microporous surface percentage up to 88.7% and a microporous volume percentage up to 82.1%. The microporosity is far more developed for the active carbons produced by chemical activation.
巨虾壳制备活性炭的优化研究
植物物质是生产含碳物质的重要来源。这项工作涉及从Parinari macrophylla(尼日尔的农业废物)的外壳中制备活性炭。考虑了物理、化学和混合活化。优化了制备的几个参数,如活化气体的性质(N2或CO2,干和湿)、活化剂的浓度(H3PO4)、浸渍时间和热解温度程序。活性炭的特征是它们的碘值、比表面积和多孔体积。由大叶Parinari macrophylla壳生产的活性炭显示出高达599mg I2/g的碘值和高达727m2/g的比表面积。它们还表现出微孔特性,平均孔径通常低于20A,微孔表面百分比高达88.7%,微孔体积百分比高达82.1%。通过化学活化生产的活性炭的微孔性要发达得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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