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Alloy degradation in a co-firing biomass CFB vortex finder application at 880 ℃

机译:880℃共烧生物质CFB涡流探测器中合金的降解

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Mechanisms of alloy degradation in a fireside N-S-O-C-H-Cl-Na-K atmosphere at 880 degrees C were elucidated using SEM-EDS, chemical equilibrium calculations, and XRD. Alloys 310S, 800H/HT, and 600 were studied after 0, 8000, and 16,000 h exposure in a boiler co-firing biomass waste. For 310S and 800H/HT it was shown that nitrogen formed internal Cr nitrides lowering the Cr activity and inhibiting internal alloy Cr permeation, and that NaCl and Na2SO4 reacted with Cr oxide to form chromate and to accelerate the S and the Cl pickup. Alloy 600 showed no nitride or major chromate formation.
机译:使用SEM-EDS,化学平衡计算和XRD阐明了在880°C的炉膛N-S-O-C-H-Cl-Na-K气氛中合金降解的机理。在锅炉共烧生物质废弃物中暴露0、8000和16,000 h后,研究了310S,800H / HT和600合金。对于310S和800H / HT,表明氮形成了内部Cr氮化物,降低了Cr的活性并抑制了内部合金Cr的渗透,NaCl和Na2SO4与Cr氧化物反应形成铬酸盐并加速了S和Cl的吸收。合金600没有显示出氮化物或主要的铬酸盐形成。

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