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Reforming Technologies to Improve the Performance of Combustion Systems

机译:改革技术以改善燃烧系统的性能

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A large number of theoretical and experimental studies have shown that the performance of kerosene combustion increases significantly if combustion is being assisted by the addition of hydrogen to the fuel/air mixture during the combustion process. It reduces the amount of CO, CO2 and NOx emissions, while increasing the flame stability limits. It also helps in bruning fuel/air mixtures at much leaner equivalence ratios. The same principle could be applied to gain benefits in gas turbine combustors. Hydrogen for this purpose could be produced by the reforming of hydrocarbon fuels using a reformer module. This paper presents key hydrogen reforming technologies which, by implementation in gas turbine combustors, hold potential for improving both their performance and service life.
机译:大量的理论和实验研究表明,如果在燃烧过程中通过在燃料/空气混合物中添加氢气来辅助燃烧,煤油的燃烧性能将大大提高。它减少了CO,CO 2 和NO x 的排放量,同时增加了火焰稳定性极限。它还有助于以更小的当量比研磨燃料/空气混合物。可以将相同的原理应用于在燃气轮机燃烧器中获得收益。为此目的,可以通过使用重整器模块重整烃类燃料来生产氢气。本文介绍了关键的氢重整技术,这些技术通过在燃气轮机燃烧室中实施,具有改善其性能和使用寿命的潜力。

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