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Investigation of Sustainable Hydrogen Production from Steam Biomass Gasification.

机译:蒸汽生物质气化过程中可持续制氢的研究。

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摘要

Hydrogen is a by-product of the gasification process and it is environmentally friendly with respect to pollution and emission issues when it is derived from a CO2-neutral resource such as biomass. It is an energy carrier fuel and has flexibility to convert efficiently to other energy forms to be used in different energy applications like fuel cells.;Results from the performed parametric study show that the gasification ratio increases from 70 to 107 gH2 per kg of sawdust. In the gasification temperature studied, system II has the highest energy efficiency that considers electricity production where it increases from 72% to 82% and has the lowest energy efficiency that considers hydrogen yield where it increases from 45% to 55%. Also, it has the lowest hydrogen cost of 0.103 ;Keywords: Gasifier, Gasification, Biomass, Hydrogen, Thermodynamics, Energy, Exergy, Exergoconomics, Efficiency, Water Gas Shift, Steam Methane Reformer, Hydrogen Cost.;The proposed research presents literature on previous gasification studies regarding hydrogen production from biomass and updates the obtained results. The main objectives of the thesis are: (a) to study hydrogen production via steam biomass (sawdust) gasification; (b) to evaluate the produced hydrogen by performing comprehensive analysis by using thermodynamic, exergoeconomic and optimization analyses. Despite details specific to the gasifier, in general, there is a special need to theoretically address the gasifier that gasifies biomass to produce hydrogen. This further study of gasification aspects presents a comprehensive performance assessment through energy and exergy analyses, provides results of the optimization studies on minimizing hydrogen production costs, and provides a thermo-economic analysis for the proposed systems (Systems I, II and III). This thesis also includes the results from the performed study that aims to investigate theoretical hydrogen production from biomass (sawdust) via gasification technology.
机译:氢气是气化过程的副产品,当它来自二氧化碳等中性资源(例如生物质)时,就污染和排放问题而言对环境无害。它是一种能量载体燃料,具有灵活地转换成其他能量形式以用于不同能源应用(如燃料电池)的灵活性。;进行的参数研究结果表明,气化率从每公斤木屑从70 gH2增加到107 gH2。在研究的气化温度中,系统II的能源效率最高,考虑到发电量从72%增加到82%,而能源效率最低的系统将氢气产量从45%增加到55%。另外,它具有最低的氢气成本0.103;关键字:气化炉,气化,生物质,氢气,热力学,能源,火用,能效经济学,效率,水煤气变换,蒸汽甲烷重整器,氢气成本。关于生物质制氢的气化研究,并更新获得的结果。论文的主要目的是:(a)研究通过蒸汽生物质(木屑)气化制氢; (b)通过使用热力学,能效经济和优化分析进行综合分析来评估产生的氢。尽管有具体的气化炉细节,但通常来说,理论上仍需要解决将生物质气化以产生氢气的气化炉。对气化方面的进一步研究通过能量和火用分析提供了全面的性能评估,提供了将氢气生产成本降至最低的优化研究结果,并为拟议系统(系统I,II和III)提供了热经济分析。本论文还包括进行的研究结果,该研究旨在研究通过气化技术从生物质(木屑)产生理论氢气的方法。

著录项

  • 作者

    Abuadala, Abdussalam Goma.;

  • 作者单位

    University of Ontario Institute of Technology (Canada).;

  • 授予单位 University of Ontario Institute of Technology (Canada).;
  • 学科 Alternative Energy.;Sustainability.;Engineering Environmental.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 259 p.
  • 总页数 259
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:45:37

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