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Rich-burn, flame-assisted fuel cell, quick-mix, lean-burn (RFQL) combustor and power generation

机译:富燃,火焰辅助燃料电池,快速混合,稀薄燃烧(RFQL)燃烧器和发电

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摘要

Micro-tubular flame-assisted fuel cells (mT-FFC) were recently proposed as a modified version of the direct flame fuel cell (DFFC) operating in a dual chamber configuration. In this work, a rich-bum, quick-mix, lean-bum (RQL) combustor is combined with a micro-tubular solid oxide fuel cell (mT-SOFC) stack to create a rich-bum, flame assisted fuel cell, quick-mix, lean-bum (RFQL) combustor and power generation system. The system is tested for rapid startup and achieves peak power densities after only 35 min of testing. The mT-FFC power density and voltage are affected by changes in the fuel-lean and fuel-rich combustion equivalence ratio. Optimal mT-FFC performance favors high fuel-rich equivalence ratios and a fuel-lean combustion equivalence ratio around 0.80. The electrical efficiency increases by 150% by using an intermediate temperature cathode material and improving the insulation. The RFQL combustor and power generation system achieves rapid startup, a simplified balance of plant and may have applications for reduced NO. formation and combined heat and power.
机译:微管火焰辅助燃料电池(mT-FFC)最近被提出作为在双室配置下运行的直接火焰燃料电池(DFFC)的改进版本。在这项工作中,将浓混合气,快速混合,稀混合气(RQL)燃烧器与微管固体氧化物燃料电池(mT-SOFC)堆组合在一起,以形成浓混合气,火焰辅助燃料电池混合,贫燃(RFQL)燃烧器和发电系统。该系统经过快速启动测试,仅经过35分钟的测试即可达到峰值功率密度。 mT-FFC的功率密度和电压受贫油和富油燃烧当量比变化的影响。最佳的mT-FFC性能有利于高燃料当量比和贫燃料燃烧当量比约0.80。通过使用中温阴极材料并改善绝缘性能,电效率提高了150%。 RFQL燃烧器和发电系统可实现快速启动,简化工厂的平衡,并可用于减少NO的应用。形成并结合了热力。

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