首页> 外国专利> LOW NOX BURNER FOR A COMPACT BOILER, APPLIANCE TO LIMIT NOX EMISSION IN A COMPACT BOILER, SELF-OPERATING COMPACT BOILER, LOW NOX BURNER FOR A COMPACT BOILER WITH FORCED CIRCULATION AND PROCESS TO REDUCE THE NOX GAS CONTENT COMBUSTING A COMPACT BOILER

LOW NOX BURNER FOR A COMPACT BOILER, APPLIANCE TO LIMIT NOX EMISSION IN A COMPACT BOILER, SELF-OPERATING COMPACT BOILER, LOW NOX BURNER FOR A COMPACT BOILER WITH FORCED CIRCULATION AND PROCESS TO REDUCE THE NOX GAS CONTENT COMBUSTING A COMPACT BOILER

机译:紧凑型锅炉的低NOx燃烧器,限制紧凑型锅炉中的NOx排放,自操作紧凑型锅炉,强制循环的紧凑型锅炉的低NOx燃烧器以及减少NOx燃烧紧凑型锅炉的过程

摘要

A method and apparatus for low NOX combustion of natural gas in a compact steam boiler having output steam delivery controlled by predetermined outlet steam pressure. The compact boiler employs a small high heat release combustor discharging into a forced draft convective heat exchange section. In operation, the compact boiler is completely and automatically self-operating, employing flue gas recirculation (FGR) wherein the FGR is admitted into the burner combustion air through a valve controlled by boiler flue gas NOX content. A novel bell mouthed flue gas scoop is utilized in the boiler stack upstream of the NOX sensor. In an alternate combustion chamber design, a cylindrical water wall coil surrounds the combustion process, increasing boiler efficiency through the inherent large temperature difference between the coil and the combustion in process, along with reducing the combustion temperature and further reducing the NOX content of combustion products. A further variation in the combustion system utilizes a ceramic shield surrounding a natural gas burner as it fires into the compact combustion chamber. Primary and secondary combustion air are admitted to the combustion chamber through first stage combustion internal of the shell and second stage combustion occurring internal of the boiler combustion chamber.
机译:一种用于紧凑型蒸汽锅炉中天然气的低NOx燃烧的方法和设备,该紧凑型蒸汽锅炉具有由预定出口蒸汽压力控制的输出蒸汽输送。紧凑型锅炉采用一个小的高放热燃烧室,排放到强制通风对流换热段。在运行中,紧凑型锅炉通过烟气再循环(FGR)完全自动地自我操作,其中FGR通过由锅炉烟气NOX含量控制的阀门进入燃烧器燃烧空气。在NOX传感器上游的锅炉烟囱中采用了一种新颖的钟形烟道气。在替代燃烧室设计中,圆柱形水冷壁盘管围绕燃烧过程,通过盘管与过程中燃烧之间固有的较大温差提高了锅炉效率,同时降低了燃烧温度并进一步降低了燃烧产物的NOX含量。 。燃烧系统的另一种变化形式是在燃气燃烧器向紧凑型燃烧室点火时,利用围绕天然气燃烧器的陶瓷护罩。一级和二级燃烧空气通过壳体内部的第一阶段燃烧和锅炉燃烧室内部发生的第二阶段燃烧进入燃烧室。

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