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FUEL FLEXIBLE RICH CATALYTIC LEAN BURN SYSTEM FOR LOW BTU FUELS

机译:用于低BTU燃料的燃料柔性富含催化瘦燃烧系统

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Limited fuel resources, increasing energy demand, and stringent emission regulations are drivers to evaluate process off-gases or process waste streams as fuels for power generation. Often these process waste streams have low energy content and their operability in gas turbines leads to issues such as unstable or incomplete combustion and changes in acoustic response. Due to above reasons, these fuels cannot be used directly without modifications or efficiency penalties in gas turbine engines. To enable the use of the wide variety of ultra-low and low Btu fuels in gas turbine engines, a rich catalytic lean burn (RCL) combustion system was developed and tested in a subscale high pressure (10 atm.) rig. Previous work has shown promise with fuels such as blast furnace gas (BFG) with Lower Heating Value (LHV) of 3.1 MJ/Nm3 (85 Btu/scf). The current testing extends the limits of RCL operability to other weak fuels by further modifying and improving the injector to achieve enhanced flame stability. Fuels containing low methane content such as weak natural gas with an LHV of 6.5 MJ/Nm~3 (180 Btu/scf) to fuels containing higher methane content such as landfill gas with an LHV of 21.1 MJ/Nm~3 (580 Btu/scf) were tested. These fuels demonstrated improved combustion stability with an extended turndown (defined as the difference between catalytic and non-catalytic lean blow out) of 140°C-170°C (280°F-340°F) with CO and NO_x emissions lower than 5 ppm corrected to 15% O_2.
机译:有限的燃料资源,增加能源需求和严格排放法规是司机,以评估工艺废气或过程废物流作为发电的燃料。通常,这些过程废物流具有低能量含量,并且它们在燃气轮机中的可操作性导致诸如不稳定或不完全燃烧的问题和声反应的变化。由于上述原因,这些燃料不能直接使用而不在燃气轮机发动机中的修改或效率处罚。为了使燃气涡轮发动机中各种超低和低BTU燃料在燃气轮机发动机中,在亚级高压(10atm。)钻机中开发并测试了富含催化稀燃(RCL)燃烧系统。以前的工作表明,燃料如高热炉气(BFG),较低的加热值(LHV)为3.1MJ / NM3(85 BTU / SCF)。目前测试通过进一步改变和改善喷射器来实现增强的火焰稳定性,将RCL可操作性的限制延伸到其他弱燃料。燃料含有低甲烷含量,例如具有6.5MJ / NM〜3(180 BTU / SCF)的LHV的弱天然气,以含有较高的甲烷含量,例如垃圾填埋气体,LHV为21.1MJ / NM〜3(580 BTU / SCF)进行了测试。这些燃料表明,具有140℃-170°C(280°F-340°F)的延长调节(定义为催化和非催化稀释吹出的差异)的燃烧稳定性,具有低于5的CO和NO_X排放量ppm校正为15%O_2。

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