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Fireside Corrosion of Superheater Materials in Coal/ Biomass Co-fired Advanced Power Plants

机译:燃煤/生物质共燃高级电厂过热材料的炉边腐蚀

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摘要

A series of laboratory-based fireside corrosion exposures were conducted to assess the effect of such conditions on superheater/reheater materials at higher than conventional metal temperatures. Controlled atmosphere furnaces combined with the "deposit recoat" test method were used to generate the exposure conditions; the gaseous environment simulated that anticipated from air-firing 20 wt% cereal co-product mixed with a UK coal. The exposures were carried out at 600, 650 and 700 °C with four candidate materials: T92, HR3C and 347HFG steels; nickel-based alloy 625. After the exposures, the samples were examined by SEM/ EDX to characterize the damage. Pre- and post-exposure dimensional metrology were used to quantify the metal damage in terms of metal loss distributions. For the austenitic steels, the combined deposit/gas/temperature exposure conditions enabled quantification of the characteristic 'bell-shaped' curves (of damage as a function of temperature) for fireside corrosion.
机译:进行了一系列基于实验室的炉边腐蚀暴露,以评估这种条件对过热器/再热器材料的影响,其温度高于常规金属温度。使用可控气氛炉结合“沉积重涂”测试方法来生成曝光条件。模拟的气态环境是将20 wt%谷物副产品与英国煤混合后进行空气燃烧而得到的。暴露是在600、650和700°C下用四种候选材料进行的:T92,HR3C和347HFG钢;镍基合金625。暴露后,通过SEM / EDX检查样品以表征损伤。暴露前和暴露后的尺寸度量用于根据金属损失分布来量化金属损伤。对于奥氏体钢,结合的沉积/气体/温度暴露条件可以量化炉边腐蚀的特征“钟形”曲线(损伤随温度的变化)。

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