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Char oxidation study of sugar cane bagasse, cotton stalk and Pakistani coal under 1% and 3% oxygen concentrations

机译:氧气浓度为1%和3%时的甘蔗渣,棉秆和巴基斯坦煤焦炭氧化研究

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摘要

Chars of Sugar cane bagasse (1 & 2), Cotton stalk and low rank Pakistani coal have been studied by TGA under low oxidative environments with O_2 concentrations of 1% and 3%. The maximum reactivity of the chars was found to be greater by a factor of 2 under 3% oxygen compared to 1% O_2 conditions. Overall conversion levels at 3% O_2 for Sugar cane bagasse-2 increased from 63% to 100%, Sugar cane bagasse-1; 54% to 97%, Cotton stalk; 45% to 100% and Pakistani coal; 63% to 90% in comparison to 1% O_2. The maximum average rate of weight loss was found in Region III compared to Region I and II supported by CO/CO_2 FTIR Chemigram analysis. On the other hand, % conversion was maximum in Region II under 1% and 3% O_2 concentration. Overall average rates of weight losses were dependant on O_2 concentration and temperature ranges, however for all the regions % conversion and average weight loss were twice in 3% compared to 1% O_2 concentration. Biomass chars were found to be more reactive than the coal studied here during each region of the oxidation process. Evaluated apparent energy of activations for biomass chars was found within range of 41.2-105.8 kJ mole under 1%, 46.9-125.6 kJ mole under 3% compared to coal; 70.3-183.9 kJ mole under 1% and 83.1-167.4 kJ mole in 3% O_2 concentration for order of reaction (n) varying between 0.5 ≤ n ≤ 2. From the tests carried under O_2 levels of 1% and 3%, it is possible to give the following sequence to the apparent activation energies under any of the fixed value of n, obtained for the biomasses and coal; Pakistani coal -> Cotton stalk > Sugar cane bagasse-2 > Sugar cane bagasse-1.
机译:TGA已在O_2浓度分别为1%和3%的低氧化环境下通过TGA研究了甘蔗渣(1&2),棉秆和低等级巴基斯坦煤焦。发现在3%的氧气条件下,与1%的O_2条件相比,焦炭的最大反应性大2倍。甘蔗渣1的总转化水平在O_2为3%时从63%提高到100%。 54%至97%,棉秆; 45%至100%和巴基斯坦煤炭; 63%至90%,而O_2为1%。与CO / CO_2 FTIR化学图分析支持的I区和II区相比,III区发现了最大的平均失重率。另一方面,在1%和3%的O_2浓度下,II区的转化率最高。总体平均失重率取决于O_2的浓度和温度范围,但是在所有区域,%转化率和平均失重是3%的两倍,而O%的浓度为1%。发现在氧化过程的每个区域中,生物质炭比此处研究的煤更具活性。与煤相比,发现生物质炭活化的表观能量估计值在41.2-105.8 kJ摩尔(低于1%),46.9-125.6 kJ摩尔(低于3%)范围内。 O%浓度为1%时为70.3-183.9 kJ摩尔,O_2浓度为33.1-167.4 kJ摩尔,反应顺序(n)在0.5≤n≤2之间变化。在1%和3%的O_2含量下进行的测试对于生物质和煤,在任何固定的n值下,可以将表观活化能赋予以下顺序;巴基斯坦煤炭->棉秆>甘蔗渣2>甘蔗渣1。

著录项

  • 来源
    《Biomass & bioenergy》 |2010年第3期|263-271|共9页
  • 作者单位

    Energy and Resources Research Institute, School of Process, Environmental and Materials Engineering, University of Leeds,Clarendon Road, Leeds, LS2 9JT, UK;

    Energy and Resources Research Institute, School of Process, Environmental and Materials Engineering, University of Leeds,Clarendon Road, Leeds, LS2 9JT, UK;

    Energy and Resources Research Institute, School of Process, Environmental and Materials Engineering, University of Leeds,Clarendon Road, Leeds, LS2 9JT, UK;

    Energy and Resources Research Institute, School of Process, Environmental and Materials Engineering, University of Leeds,Clarendon Road, Leeds, LS2 9JT, UK;

  • 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

    saccharum officinarum; gossypium arboreum; pakistani coal; biomass; char; reactivity; coats redfern method; non-isothermal kinetics;

    机译:蔗糖植物棉巴基斯坦煤炭生物质字符反应性大衣redfern方法;非等温动力学;

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