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Preliminary study on lean premixed combustion of ammonia-hydrogen for swirling gas turbine combustors

机译:涡流燃气轮机燃烧器氨氢稀混合气燃烧的初步研究

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摘要

Hydrogen has been considered one of the most promising materials for energy storage during the last decade with considerable research having been undertaken to demonstrate the use of the molecule in power production systems. However, hydrogen presents drawbacks in terms of global commercialisation and deployment since its distribution is only feasible with significant dedicated infrastructure investment including liquefaction or if it is combined with other gases such as methane. The latter will still produce carbon emissions, whilst the former is not economically viable with current technologies. Therefore, an alternative is to use ammonia as a hydrogen storage vector. Ammonia, a molecule that has been used for more than a century, is a well-known material distributed across the world. Moreover, its properties allow its liquefaction at a relatively low pressure under atmospheric temperature compared to hydrogen, serving as a compound that can be used from fertilising to industrial processes. For power generation, ammonia has demonstrated to have a very slow reaction hence flame speeds, thus one option is to dope the fuel with a more reactive molecule such as hydrogen, which conveniently can be obtained from cracking ammonia. Hence, this paper presents the results of a numerical and experimental campaign where a 50:50 (vol%) ammonia-hydrogen blend was used for lean premixed combustion in a generic swirl combustor used in gas turbine studies. The results show that whilst the mixture can produce a good flame velocity similar to methane with the mixture having near equivalent laminar flame speed characteristics, the high diffusivity of hydrogen under these conditions leads to a narrow operational envelope with the potential for boundary layer flashback. High NO. emissions are produced due to the excess production of OH and O radicals. Recommendations for further studies and future developments are also discussed. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在过去的十年中,氢一直被认为是最有前途的能量存储材料之一,并且已经进行了大量的研究来证明该分子在发电系统中的使用。但是,氢气在全球商业化和部署方面存在弊端,因为只有在大量专门的基础设施投资(包括液化)或与甲烷等其他气体混合使用的情况下,氢气的分配才是可行的。后者仍将产生碳排放,而前者在当前技术上在经济上不可行。因此,替代方案是使用氨作为储氢载体。氨是一种已经使用了一个多世纪的分子,是一种分布在世界各地的知名材料。此外,与氢相比,它的性质允许其在相对较低的压力下在大气温度下液化,这是一种可用于从施肥到工业过程的化合物。对于发电,已证明氨具有非常慢的反应,因此具有火焰速度,因此一种选择是在燃料中掺入更具反应性的分子,例如氢,可以容易地通过裂化氨获得氢。因此,本文介绍了一项数值和实验研究的结果,其中在燃气轮机研究中使用的通用旋流燃烧器中,将50:50(vol%)的氨-氢混合物用于稀薄预混燃烧。结果表明,尽管混合物可产生与甲烷相似的良好火焰速度,且混合物具有接近相等的层流火焰速度特征,但在这些条件下氢气的高扩散性导致狭窄的操作范围,并可能产生边界层回火。高编号由于OH和O自由基的过量产生而产生排放。还讨论了进一步研究和未来发展的建议。 (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38期|24495-24503|共9页
  • 作者单位

    Cardiff Univ, Gas Turbine Res Ctr, Cardiff, S Glam, Wales;

    Cardiff Univ, Gas Turbine Res Ctr, Cardiff, S Glam, Wales;

    Cardiff Univ, Gas Turbine Res Ctr, Cardiff, S Glam, Wales;

    Siemens Ind Turbomachinery Ltd, Lincoln, England;

    Cardiff Univ, Gas Turbine Res Ctr, Cardiff, S Glam, Wales;

  • 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

    Ammonia combustion; Premixing; Swirling flows;

    机译:氨燃烧;预混;旋流;

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