首页> 外文期刊>Combustion and Flame >Experimental study and kinetic analysis of the laminar burning velocity of NH_3/syngas/air, NH_3/CO/air and NH_3/H_2/air premixed flames at elevated pressures
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Experimental study and kinetic analysis of the laminar burning velocity of NH_3/syngas/air, NH_3/CO/air and NH_3/H_2/air premixed flames at elevated pressures

机译:NH_3 /合成气,NH_3 / CO /空气和NH_3 / H_2 /空预混火焰在升高压力下的实验研究和动力学分析

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摘要

Mixing ammonia with syngas can be a promising way to overcome the low reactivity of ammonia, allowing it to find usage in IGCC (Integrated Gasification Combined Cycle) systems and gas turbines for power generation. However, fundamental experimental data on laminar burning velocity of NH3/syngas/air are rather scarce, especially at elevated pressures. This information is critical for the development and validation of reaction mechanisms and advances in combustor design. In the present work, measurements of the laminar burning velocities (S-L) of NH3/syngas/air, NH3/CO/air, and NH3/H-2/air premixed flames were performed by the heat flux method at pressures up to 5 atm, equivalence ratios ranging from 0.7 to 1.6, ammonia mole fractions in the fuel mixture from 0.2 to 1.0 in the NH3/syngas/air mixtures and 0.03-1.0 in the NH3/CO/air mixtures. Several recently published ammonia oxidation mechanisms were tested against the present experimental data. The measurements and predictions of SL exhibit discrepancies especially for NH3/H-2/air flames at elevated pressures. The pressure exponent factors, beta, characterizing burning velocity at elevated pressure via empirical power-law correlation S-L/S-L0 =(P/P-0)(beta) are extracted from the measured S-L and compared with the numerical results. The thermal, diffusion, and chemical effects of blending syngas with ammonia on S-L of the mixtures are distinguished, and the dominant role of the adiabatic flame temperature on the variation of the pressure exponent beta is discussed. Kinetic modeling and sensitivity analyses showed that reactions of NHi to N2Hi (1=0-4) species affect the predicted S-L under rich conditions. At elevated pressures, these reactions also affect the NO formation via third-body collision reactions and NHi + NO reactions. Even for rich flames, the ammonia consumption is favored with the addition of syngas which also promotes NO formation by enriching the H and OH radical pools and increasing the flame temperature. The addition of hydrogen or carbon monoxide has equally promoting effect on the ammonia decomposition and NOx formation although their flame speed differs a lot. (C) 2020 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:将氨与合成气混合可以是克服氨的低反应性的有希望的方法,从而允许其在IGCC(综合气化联合循环)系统和燃气轮机中用于发电的用途。然而,关于NH3 /合成气/空气的层层燃烧速度的基本实验数据相当稀缺,特别是在升高的压力下。这些信息对于开发和验证反应机制和燃烧器设计的进步至关重要。在本作的工作中,通过高达5atm的压力进行热通量法进行NH3 /合成气/空气,NH3 / CO /空气和NH 3 / H-2 /空气预混火焰的层流燃烧速度(SL)的测量,在NH 3 /合成气/空气混合物中为0.7至1.6,燃料混合物中的氨摩尔分数的等效率在NH 3 /合成气/空气混合物中的0.2至1.0和NH 3 / CO /空气混合物中的0.03-1.0。测试几种最近公开的氨氧化机制针对本实验数据进行测试。 SL的测量和预测表现出差异升高的NH 3 / H-2 /空气火焰的差异。通过经验功率 - 律相关性S-L中提取升高压力的燃烧速度的压力指数因子β,其从测量的S-L中提取,并与数值结果进行比较。分辨与混合物S-L上氨的混合合成气的热,扩散和化学效果,并讨论了绝热火焰温度对压力指数β的变化的显性作用。动力学建模和敏感性分析表明,NHI至N2HI(1 = 0-4)物种的反应影响了富条件下预测的S-L。在压力升高时,这些反应也会通过第三体碰撞反应和NHI + NO反应影响NO形成。即使对于富含火焰而言,氨消耗也赞成添加合成气,该合成气也通过富集H和OH激进池并增加火焰温度来促进没有形成。氢气或一氧化碳的添加具有同样促进对氨分解和NOx形成的影响,尽管它们的火焰速度不同。 (c)2020燃烧研究所。由elsevier Inc.出版的所有权利保留。

著录项

  • 来源
    《Combustion and Flame》 |2020年第11期|270-287|共18页
  • 作者单位

    Zhejiang Univ State Key Lab Clean Energy Utilizat Hangzhou 310027 Peoples R China|King Abdullah Univ Sci & Technol Clean Combust Res Ctr Thuwal Saudi Arabia;

    Zhejiang Univ State Key Lab Clean Energy Utilizat Hangzhou 310027 Peoples R China;

    King Abdullah Univ Sci & Technol Clean Combust Res Ctr Thuwal Saudi Arabia;

    Zhejiang Univ State Key Lab Clean Energy Utilizat Hangzhou 310027 Peoples R China|Lund Univ Div Combust Phys S-22100 Lund Sweden;

    Zhejiang Univ State Key Lab Clean Energy Utilizat Hangzhou 310027 Peoples R China;

    Univ Lisbon Inst Super Tecn Mech Engn Dept IDMEC Lisbon Portugal;

    Lund Univ Div Combust Phys S-22100 Lund Sweden;

    King Abdullah Univ Sci & Technol Clean Combust Res Ctr Thuwal Saudi Arabia;

  • 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, syngas; High-pressure; Laminar burning velocity; Measurements; Kinetic modeling;

    机译:氨;合成气;高压;层状燃烧速度;测量;动力学建模;

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