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Gasification of empty fruit brunch in micro fixed bed reactor for hydrogen production

机译:在微型固定床反应器中将空果早午餐气化以生产氢气

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摘要

Providing energy for future has been a big problem considering the fossil fuel running out and high demand for energy consumption. Biomass considered the most favorable source of energy on the earth which optimize within 10 to 15% of world energy as primary source. The aim of this research is to find a new sustainable source of energy and evaluate the benefits and efficiency as well. The studies include equivalence ratio (ER), steam to biomass ratio (S/B), and temperature. The preferred ER and S/B ratio were set to 0.4 and 0.5 to 0.8 respectively, furthermore temperature profiles of 600°C to 700°C applied to investigate the effect on the experiments. The results show that beside syngas (CO and H2), CO2, CH4, C2H4 and C2H6 were also generated. Only hydroxygenated compound such phenol, X and Y, were detected using Gas chromatography mass spectrometers (GCMS) in the liquid product. The H2 content was measured in the product gases up to 50% which increased by increasing the S/B and the temperature. In addition, the amount of solid residual identified as char, and had opposite behavior compare to H2,. The experiments achievements conclude that gasification of EFB could be a competitive method for renewable source of energy in future
机译:考虑到化石燃料的枯竭和高能耗需求,为未来提供能源一直是一个大问题。生物质被认为是地球上最有利的能源,其主要能源在世界能源的10%至15%之内优化。这项研究的目的是寻找新的可持续能源,并评估其效益和效率。研究包括当量比(ER),蒸汽与生物量比(S / B)和温度。优选的ER和S / B比分别设置为0.4和0.5至0.8,此外还采用600℃至700℃的温度曲线来研究对实验的影响。结果表明,除了合成气(CO和H2)外,还生成了CO2,CH4,C2H4和C2H6。使用气相色谱质谱仪(GCMS)在液体产物中仅检测到羟基化的化合物(例如苯酚X和Y)。在产品气体中测量的H2含量最高为50%,可通过提高S / B和温度来提高H2含量。另外,与H 2相比,固体残渣的量被鉴定为炭,并且具有相反的行为。实验结果表明,EFB的气化可能是未来可再生能源的一种竞争方法

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    Mazangi Mojtaba;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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