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Nanoporous carbon from corn cobs and its applications.

机译:玉米芯的纳米孔碳及其应用。

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摘要

Chemical activation of corn cobs using phosphoric acid or potassium hydroxide can lead to nanoporous carbon having surface area in excess of 3800 m 2/g and pore volume of 2.5cc/g. Dried, crushed, corn cobs were carbonized at temperatures between 450-900°C and chemically activated using H 3PO4 and KOH. The effect of different variables of activation such as heat treatment temperature, rate of heating and concentration of activating agent was studied. The mechanism of phosphoric acid activation was studied using thermogravimetric analysis. The nanoporous carbon was characterized by N2 adsorption at 77 K, and the isotherms were analyzed using BET, T-method and D-R method for determining surface area and pore volume.;The nanoporous carbon obtained from corn cobs was further converted to monolithic form and its capacity to store natural gas at 500psi and 298K was measured using gravimetric and volumetric measuring techniques. Methane capacity as high as 173V/V or 0.21g/g or 108g/L were obtained on the carbon produced from corn cobs. The effect of various parameters of carbon production on the methane storage and delivery capacity was studied.
机译:使用磷酸或氢氧化钾对玉米芯进行化学活化可导致纳米多孔碳的表面积超过3800 m 2 / g,孔体积为2.5cc / g。将干燥,压碎的玉米芯在450-900°C的温度下碳化,并使用H 3PO4和KOH进行化学活化。研究了不同的活化变量如热处理温度,加热速率和活化剂浓度的影响。用热重分析法研究了磷酸活化的机理。用77 K的N2吸附表征了纳米孔碳,并用BET法,T法和DR法分析了等温线,确定了表面积和孔体积。使用重量和体积测量技术测量了在500psi和298K下储存天然气的能力。由玉米芯生产的碳获得的甲烷容量高达173V / V或0.21g / g或108g / L。研究了碳生产的各种参数对甲烷存储和输送能力的影响。

著录项

  • 作者

    Shah, Parag S.;

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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