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Hydrogen from empty cotton boll agro-waste via thermochemical route and, feasibility study of operating an IC engine in continuous mode

机译:空棉铃农业废料中通过热化学途径产生的氢气,以及以连续模式运行内燃机的可行性研究

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摘要

Hydrogen can be cited as prospective source of clean power. In this work hydrogen rich syn-gas generated from the agro-waste, empty cotton bolls was injected into an IC engine in continuous mode along with gasoline. At the air-fuel ratio of 23.40, specific fuel consumption of 0.35 kg kWh(-1), the engine could be operated with higher efficiency than with gasoline alone. A distinct reduction in emission characteristics could also be seen. Empty cotton bolls derived after removal of cotton from the flower in field, was first studied for fuel properties. The reasonably high heating value (HHV) of 17.54 K. kg(-1) suggested that it could be a precursor to hydrogen via two stepped thermo-chemical process. The first step involved slow pyrolysis of the biomass at 500 degrees C for 60 min at a heating rate of 10 degrees C min(-1) yielding 39.71% bio-char by weight. The C, H, N, S and O contents of the produced bio-char was 59.91, 2.91, 0.72, 0.47 and 35.99% respectively and its HHV was 26.7 MJ kg(-1). Steam gasification of this bio-char, at 700 degrees C and water flowrate of 7 mL min(-1) exhibited maximum hydrogen yield of 67.42% (v/v) in the syn-gas mixture. Subsequent enrichment of the gas using ethanolamine/ethylene diamine and KMnO4 solutions resulted in more than 90% (v/v) hydrogen in the combustible gas mixture and the test engine could be effectively operated. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氢气可以被视为清洁能源的潜在来源。在这项工作中,由农业废料产生的富氢合成气,空棉铃和汽油一起以连续模式注入到内燃机中。在空燃比为23.40,比燃料消耗为0.35 kg kWh(-1)的情况下,与单独使用汽油相比,发动机可以更高的效率运转。还可以看到排放特性明显降低。首先研究了田间从花中除去棉花后获得的空棉铃的燃料特性。 17.54 K. kg(-1)的较高发热量(HHV)表明,它可以通过两步热化学过程成为氢气的前驱物。第一步涉及在500摄氏度下以10摄氏度min(-1)的加热速率将生物质缓慢热解60分钟,从而产生39.71%重量的生物炭。所生产的生物炭的C,H,N,S和O含量分别为59.91%,2.91%,0.72%,0.47%和35.99%,其HHV为26.7 MJ kg(-1)。该生物炭的蒸汽气化温度为700摄氏度,水流量为7 mL min(-1),在合成气混合物中显示出67.42%(v / v)的最大氢产率。随后使用乙醇胺/乙二胺和KMnO4溶液富集气体,可燃气体混合物中氢气的含量超过90%(v / v),测试发动机可以有效运行。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2017年第21期|14471-14484|共14页
  • 作者单位

    CSIR, Cent Salt & Marine Chem Res Inst, Proc Design & Engn Cell, GB Marg, Bhavnagar 364002, Gujarat, India;

    CSIR, Cent Salt & Marine Chem Res Inst, Proc Design & Engn Cell, GB Marg, Bhavnagar 364002, Gujarat, India;

    CSIR, Cent Salt & Marine Chem Res Inst, Proc Design & Engn Cell, GB Marg, Bhavnagar 364002, Gujarat, India;

    CSIR, Cent Salt & Marine Chem Res Inst, Proc Design & Engn Cell, GB Marg, Bhavnagar 364002, Gujarat, India;

    CSIR, Cent Salt & Marine Chem Res Inst, Proc Design & Engn Cell, GB Marg, Bhavnagar 364002, Gujarat, India;

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

    Empty cotton bolls; Slow fixed bed pyrolysis; Steam gasification; Syn-gas enrichment; IC engine operation;

    机译:空棉铃;慢速固定床热解;蒸汽气化;合成气富集;内燃机运行;

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