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Effect of Lead Content in Used Wood Fuel on Furnace Wall Corrosion of 16Mo3, 304L and Alloy 625

机译:二手木材燃料铅含量对16MO3,304L和合金625的熔炉壳腐蚀的影响

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Abstract Corrosion of furnace wall tubes is a problem often caused by the use of corrosive fuels. The relatively high contents of lead, zinc, alkali metals and chlorides in these fuels are believed to contribute to the corrosion. Initial corrosion as a function of lead content in a wood-based fuel was studied for three materials: 16Mo3, 304L and Alloy 625. The materials were exposed for 8?h in a laboratory combustion test rig at a position resembling furnace wall conditions. The metal temperatures investigated were 350 and 400?°C. Increasing the lead content in the fuel or the temperature accelerated the corrosion rate of 16Mo3. It is proposed that lead and lead oxides in deposits react with iron chloride to form lead chloride, which when combined with alkali chlorides results in a very corrosive deposit containing low melting salt mixtures. Negligible corrosion was observed for 304L and Alloy 625.
机译:<标题>抽象 ara id =“par1”>炉壁管的腐蚀是一种经常使用腐蚀性燃料引起的问题。 这些燃料中的铅,锌,碱金属和氯化物中的相对较高的含量有助于腐蚀。 研究了三种材料中木制燃料中铅含量的初始腐蚀:16MO3,304L和合金625.在实验室燃烧试验台中以类似于炉壁条件的位置暴露8ΩH。 研究的金属温度为350和400?°C。 增加燃料中的铅含量或温度加速了16mO3的腐蚀速率。 提出,沉积物中的铅和铅氧化物与氯化铁反应形成氯化铅,其与碱氯化物结合时导致含有低熔融盐混合物的非常腐蚀性沉积物。 对于304L和合金625,观察到可忽略不计的腐蚀。

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