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首页> 外文期刊>Bulletin of the Institute of Heat Engineering >Emission characteristics of a novel low NOx burner fueled by hydrogen-rich mixtures with methane
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Emission characteristics of a novel low NOx burner fueled by hydrogen-rich mixtures with methane

机译:富氢甲烷与甲烷燃料驱动的新型低NOx燃烧器的排放特性

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The use of hydrogen-rich fuels may be challenging for burner designers due to unique properties of hydrogen compared to conventional fuels such as natural gas. Burner retrofit may be required to use hydrogen-enriched fuels in combustion systems that are designed for natural gas combustion. This study aimed to experimentally investigate NOx emissions from a novel low NOx burner fueled by methane-hydrogen mixtures. The burner was tested in a cylindrical combustion chamber at atmospheric pressure. Burner thermal load of 25 kW (LHV) and air-fuel equivalence ratio of 1.15 were maintained throughout the experimental campaign. The influence of burner design parameters on NOx emissions was tested for various fuel compositions using a statistically cognizant experimental design. The study revealed that shifting the burner head upstream can deliver NOx emission reduction. In contrast, supplying fuel to the burner through secondary fuel ports increases NOx emissions, particularly when the burner head is shifted upstream. The lowest predicted NOx emissions from the burner are below 9 ppmvd at 3% of O2 and 14 ppmvd at 3% of O2 for 5% and 30% mass fraction of hydrogen in the fuel, respectively.
机译:与传统燃料(例如天然气)相比,由于氢的独特性能,对于燃烧器设计者而言,使用富氢燃料可能会面临挑战。在为天然气燃烧而设计的燃烧系统中,可能需要对燃烧器进行改造,以使用富氢燃料。这项研究旨在通过实验研究由甲烷-氢气混合物提供燃料的新型低NOx燃烧器的NOx排放。在大气压下在圆柱形燃烧室中测试燃烧器。在整个实验过程中,燃烧器的热负荷为25 kW(LHV),空燃比为1.15。使用统计认知的实验设计,测试了燃烧器设计参数对NOx排放的影响,以分析各种燃料成分。研究表明,将燃烧器头向上游移动可以减少NOx排放。相反,通过次级燃料端口向燃烧器供应燃料会增加NOx排放,特别是在燃烧器头向上游移动时。对于燃料中5%和30%的氢气,燃烧器的最低NOx排放预测值分别在3%的O2下低于9 ppmvd,在3%的O2下低于14 ppmvd。

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