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Comparative Analysis of Energy and Exergy Performance of Hydrogen Production Methods

机译:氢气生产方法能量和漏洞性能的比较分析

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摘要

The study of the viability of hydrogen production as a sustainable energy source is a current challenge, to satisfy the great world energy demand. There are several techniques to produce hydrogen, either mature or under development. The election of the hydrogen production method will have a high impact on practical sustainability of the hydrogen economy. An important profile for the viability of a process is the calculation of energy and exergy efficiencies, as well as their overall integration into the circular economy. To carry out theoretical energy and exergy analyses we have estimated proposed hydrogen production using different software (DWSIM and MATLAB) and reference conditions. The analysis consolidates methane reforming or auto-thermal reforming as the viable technologies at the present state of the art, with reasonable energy and exergy efficiencies, but pending on the impact of environmental constraints as CO2 emission countermeasures. However, natural gas or electrolysis show very promising results, and should be advanced in their technological and maturity scaling. Electrolysis shows a very good exergy efficiency due to the fact that electricity itself is a high exergy source. Pyrolysis exergy loses are mostly in the form of solid carbon material, which has a very high integration potential into the hydrogen economy.
机译:氢气生产活力作为可持续能源的研究是目前的挑战,以满足巨大的世界能源需求。有几种生产氢气成熟或正在开发的技术。氢生产方法的选举将对氢气经济的实际可持续性产生高影响力。一个重要的个人资料,该过程的可行性是计算能源和漏洞的效率,以及它们对循环经济的整体整合。为了开展理论能源和漏洞分析,我们估计了使用不同软件(DWSIM和MATLAB)和参考条件的提出的氢生产。该分析将甲烷重整或自动热重整作为现有技术的可行技术,具有合理的能量和漏洞,但在环境限制的影响下作为CO2排放对策。然而,天然气或电解表现出非常有前途的结果,并且应该在其技术和成熟度缩放中提出。电解显示出很好的高度效率,因为电力本身是一个高漏洞的来源。热解能失速主要是固体碳材料的形式,其具有对氢经济的非常高的集成势。

著录项

  • 期刊名称 Entropy
  • 作者单位
  • 年(卷),期 2020(22),11
  • 年度 2020
  • 页码 1286
  • 总页数 17
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:氢气产量;能量分析;漏洞分析;氢气经济;氢气方法比较;

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