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Comparison of activated carbon prepared from Jatropha hullby conventional heating and microwave heating

机译:麻疯树皮常规加热与微波加热制备活性炭的比较

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摘要

An attempt to compare the yield and porous nature of the activated carbon prepared using the conventional and microwave assisted heating, is the focus of the present work. Towards this Jatropha hull (a biomass precursor) is activated using the popular activating agents, steam and CO_2 to assess the relative merit of activating agents and the heating methods. The process optimization exercise is carried out with the minimum number of experiments following the standard full factorial statistical design of experiments (RSM). The activated carbon prepared under the optimized conditions is compared based on the yield and porous nature. The yield of activated carbon is not found to vary significantly for the steam activation, irrespective of the heating method, while it is found to double using CO_2 activation with microwave heating as compared to conventional heating. The pore volume and the surface area is found to double using the microwave heating with steam, while it is found to be of the same order of magnitude using CO_2 activation. Although the porosity of carbon is of the same order of magnitude using CO_2 activation, the activation temperature, the activation time, CO_2 flow rate are significantly lower than the conventional heating rendering the process more economical than the conventional heating. The steam-carbon reaction rate is significantly higher than the carbon-C02 reaction rate, rendering the time requiring for activation lesser using steam activation as compared to CO_2 activation.
机译:尝试比较使用常规加热和微波辅助加热制备的活性炭的产率和多孔性是本工作的重点。为此,麻风树皮(生物质前体)被普遍使用的活化剂,蒸汽和CO_2活化,以评估活化剂的相对优点和加热方法。按照标准的全因子统计实验设计(RSM),以最少的实验次数进行过程优化。根据收率和多孔性比较在最佳条件下制备的活性炭。不论加热方法如何,均未发现活性炭的产率对于蒸汽活化有显着变化,而与常规加热相比,使用微波加热的CO_2活化可将活性炭的产率提高一倍。使用微波蒸汽加热发现孔体积和表面积加倍,而使用CO 2活化发现孔体积和表面积加倍。尽管使用CO 2活化,碳的孔隙率处于相同的数量级,但是活化温度,活化时间,CO 2流速显着低于常规加热,使得该方法比常规加热更经济。蒸汽-碳的反应速率显着高于碳-CO 2的反应速率,与CO_2活化相比,使用蒸汽活化所需的活化时间更少。

著录项

  • 来源
    《Biomass & bioenergy》 |2011年第9期|p.3920-3926|共7页
  • 作者单位

    Kunming University of Science and Technology, Faculty of Materials and Metallurgy Engineering, Kunming, Yunnan 650093, China Key Laboratory of Unconventional Metallurgy, Kunming Uniuersity of Science and Technology, Kunming, Yunnan 650093, China;

    Key Laboratory of Unconventional Metallurgy, Kunming Uniuersity of Science and Technology, Kunming, Yunnan 650093, China Chemical Engineering Department, The Petroleum Institute, P.O. Box 2533, Abu Dhabi, United Arab Emirates;

    Kunming University of Science and Technology, Faculty of Materials and Metallurgy Engineering, Kunming, Yunnan 650093, China Key Laboratory of Unconventional Metallurgy, Kunming Uniuersity of Science and Technology, Kunming, Yunnan 650093, China;

    Kunming University of Science and Technology, Faculty of Materials and Metallurgy Engineering, Kunming, Yunnan 650093, China Key Laboratory of Unconventional Metallurgy, Kunming Uniuersity of Science and Technology, Kunming, Yunnan 650093, China;

    Kunming University of Science and Technology, Faculty of Materials and Metallurgy Engineering, Kunming, Yunnan 650093, China Key Laboratory of Unconventional Metallurgy, Kunming Uniuersity of Science and Technology, Kunming, Yunnan 650093, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Activated carbon; Jatropha hull; Microwave heating; Pore size distribution; Comparison;

    机译:活性炭;麻风树皮微波加热;孔径分布;比较方式;

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