首页> 外文会议>5th International Symposium on High Temperature Corrosion and Protection of Materials, 5th, May 22-26, 2000, Les Embiez, France >Effects of Fuel Composition and Combustion Parameters on Furnace Wall Fireside Corrosion in Pulverised Coal-Fired Boilers
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Effects of Fuel Composition and Combustion Parameters on Furnace Wall Fireside Corrosion in Pulverised Coal-Fired Boilers

机译:燃料成分和燃烧参数对煤粉锅炉炉壁炉膛腐蚀的影响

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Precision metrology corrosion probes have been exposed in a lMW_(th) combustion test facility to investigate the influence of operational and fuel variables on the furnace wall fireside corrosion rates of power station boiler tubing. Negligible corrosion occurred under predominantly oxidising local flue gas conditions. The corrosion rates were found to be dependent only upon metal temperature, with no effects of coal composition or heat flux being discernible. Under reducing conditions, the corrosion mechanism shifted progressively from oxidation towards sulphidation as the CO content of the local flue gas increased. There was no measurable effect of heat flux on the corrosion rates in the absence of chlorine, but increasing the CO content of the local flue gas increased the corrosion rates via the formation of progressively more sulphide within the corrosion scale. In the presence of chlorine, metal chlorination, via the HCl/FeCl_2 mechanism, came into play and dominated the overall metal loss. Linear reaction kinetics ensued and these were strongly influenced by a close interrelationship between coal chlorine content and heat flux.
机译:精密计量腐蚀探头已经暴露在1MW燃烧测试设备中,以研究运行和燃料变量对电站锅炉管道炉壁炉膛腐蚀速率的影响。在主要氧化本地烟气条件下发生的腐蚀可忽略不计。发现腐蚀速率仅取决于金属温度,没有明显的煤组成或热通量影响。在还原条件下,随着局部烟道气中CO含量的增加,腐蚀机理逐渐从氧化转变为硫化。在没有氯的情况下,热通量对腐蚀速率没有可测量的影响,但是通过在腐蚀范围内逐渐形成更多的硫化物,增加局部烟道气中的CO含量可以提高腐蚀速率。在存在氯的情况下,通过HCl / FeCl_2机理进行的金属氯化作用发挥了主导作用,并主导了总体金属损失。随之而来的线性反应动力学受到煤氯含量和热通量之间密切关系的强烈影响。

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