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Multiple-injection dry low-NOx combustor for hydrogen-rich syngas fuel: testing and evaluation of performance in an IGCC pilot plant

机译:富氢合成气燃料的多次喷射干式低NOx燃烧器:在IGCC中试装置中进行性能测试和评估

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The successful development of oxygen-blown integrated coal gasification combined cycle (IGCC) technology requires gas turbines capable of achieving the dry low nitrogen oxides (NOx) combustion of hydrogen-rich syngas for low emissions and high plant efficiency. The authors have been developing a “multiple-injection burner” to achieve the dry low-NOx combustion of hydrogen-rich syngas. This burner consists of multiple fuel nozzles and a perforated plate with multiple air holes. At each injection point, one fuel nozzle and one air hole are installed coaxially, so that a fuel jet surrounded by a sheath air jet is injected. The burner achieves low-NOx combustion by mixing fuel and air rapidly with multiple fuel-air coaxial jets, and prevents flashback into the burner by lifting the flame from itself. The purpose of this paper is to present the test results of multi-can combustors equipped with multiple-injection burners in an IGCC pilot plant, and evaluate combustor performance by focusing on the effects of flame shapes. The syngas fuel produced in the plant contained approximately 50% carbon monoxide, 20% hydrogen, and 20% nitrogen by volume. In the tests, the combustor with slenderer flames achieved lower NOx emissions of 10.9 ppm (at 15% oxygen) diluent-free with high stability and high reliability, and reduced both combustor liner and burner plate metal temperatures at the maximum gas turbine load. These findings demonstrated that the multiple-injection combustor achieved the dry low-NOx combustion of the syngas fuel in the plant.
机译:吹氧集成煤气化联合循环(IGCC)技术的成功发展需要燃气轮机能够实现富氢合成气的干燥低氮氧化物(NOx)燃烧,以实现低排放和高工厂效率。作者一直在开发一种“多次喷射燃烧器”,以实现富氢合成气的干燥低NOx燃烧。该燃烧器由多个燃料喷嘴和带有多个气孔的多孔板组成。在每个喷射点处,同轴地安装一个燃料喷嘴和一个气孔,从而喷射被鞘空气喷嘴包围的燃料喷嘴。燃烧器通过将燃料和空气与多个燃料-空气同轴射流快速混合来实现低NOx燃烧,并通过将火焰从燃烧器自身抬起来防止闪回燃烧器。本文的目的是介绍在IGCC中试工厂配备多喷嘴燃烧器的多罐燃烧器的测试结果,并通过关注火焰形状的影响来评估燃烧器的性能。在工厂中生产的合成气燃料按体积计包含约50%一氧化碳,20%氢气和20%氮气。在测试中,具有更细长火焰的燃烧器实现了无稀释剂的低NOx排放(在15%的氧气下),具有较高的稳定性和可靠性,并在最大燃气轮机负载下降低了燃烧室衬板和燃烧器板的金属温度。这些发现表明,多次喷射燃烧室实现了工厂中合成气燃料的干燥低NOx燃烧。

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