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Could Biomass-Fueled Boilers Be Operated At Higher Steam Temperatures? 2. Field Tests Of Candidate Superheater Alloys

机译:可以在较高的蒸汽温度下运行生物量燃料锅炉吗? 2.候选过热器合金的现场测试

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Operating superheater tubes of biomass-fired boilers at considerably higher temperatures than can be tolerated by commonly used structural materials could improve boiler efficiency. However, corrosion of the superheater tubes promoted by interaction with the relatively low melting point deposits that accumulate on the tubes becomes a major issue. The objective of this task was to use field exposures to determine if there are materials acceptable for use as superheater tubes that can operate at temperatures at least 100 Celsius degrees above the current maximum superheater temperature. Corrosion probes containing multiple specimens of nine different alloys were exposed for at least 2,000 hours in the superheater area of three biomass boilers where the deposits were determined to be enriched in potassium or chlorine. Similar specimens were also exposed in a boiler co-firing coal and wood. For the probes, specimen temperatures ranged from a low of less than 400°C to temperatures above 600°C for all but one case. Following exposure, a section was taken from each specimen and examined using light microscopy and scanning electron microscopy. Results of the examination of these specimens showed some alloys performed considerably better than others, but the corrosion resistance could not be related to chromium or molybdenum content of the alloys.
机译:通过常用的结构材料可容许的温度高,生物质烧制锅炉的操作过热器管可以提高锅炉效率。然而,通过与在管上积聚的相对低熔点沉积物的相互作用促进的过热器管的腐蚀成为主要问题。该任务的目的是使用现场曝光,以确定是否有材料可以使用,以便用作可在电流最大过热器温度高于最高100摄氏度的温度下操作的过热器管。在三种生物质锅炉的过热器面积中暴露含有多个九种不同合金标本的腐蚀探针在三种生物质锅炉的过热器面积中,确定沉积物富含钾或氯。类似的标本也暴露在锅炉共烧煤和木材中。对于探针,对于所有情况而言,样品温度范围为低于400℃的低于600℃的温度。接触后,从每个样品中取出一部分并使用光学显微镜检查和扫描电子显微镜检查。这些标本的检查结果表明,一些合金比其他合金更好地表现出,但耐腐蚀性不能与合金的铬或钼含量有关。

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