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Corrosion Resistance of Novel Coatings on Ferritic Steels for Oxycombustion-Supercritical Steam Boilers: Preliminary Results

机译:氧燃烧-超临界蒸汽锅炉铁素体钢上新型涂层的耐腐蚀性:初步结果

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摘要

Increasing the efficiency of coal fired steam power plants is an important contribution towards clean coal power. In fact, new ferritic steels are expected to withstand 325 bar and 650 A degrees C. Moreover, in order to facilitate CO2 capture oxygen can be used instead of air for combustion (oxycombustion) so that no NOX emissions are produced. Boiler components, such as superheater tubes, are exposed to both steam and fireside corrosion and at higher temperatures, ferritic steels corrode at very fast rates under both atmospheres. A solution can be found in the use of protective coatings, a number of which, applied by techniques capable of depositing said coatings both on the inner and outer surfaces of tubes, are being studied within nationally and European funded projects. In particular, two new Ni and Cr modified aluminide coatings deposited on P92 by non-line-of-sight hybrid processes have been produced and the preliminary results of on-going laboratory testing, both under oxycombustion model atmospheres as well as under pure steam at 650 A degrees C are promising, in particular those exhibited by the Cr enriched aluminide coating. Moreover, results obtained in a pilot oxycombustion boiler operated by CIUDEN in Leon, Spain are also shown.
机译:提高燃煤蒸汽电厂的效率是对清洁燃煤发电的重要贡献。实际上,新的铁素体钢有望承受325 bar和650 A的温度。此外,为了促进CO2的捕获,可以使用氧气代替空气进行燃烧(氧燃烧),这样就不会产生NOX排放。锅炉部件(例如过热管)暴露于蒸汽和炉边腐蚀,并且在较高温度下,铁素体钢在两种气氛下都以非常快的速率腐蚀。在使用保护性涂层中可以找到一种解决方案,其中一些通过能够在管的内表面和外表面上沉积所述涂层的技术来应用,并且正在国家和欧洲资助的项目中进行研究。特别是,在氧气燃烧模型气氛和纯蒸汽下,通过非视距混合工艺在P92上沉积了两种新的Ni和Cr改性铝化物涂层,并获得了正在进行的实验室测试的初步结果。 650 A的温度是有希望的,特别是富铬铝化物涂层所表现出的温度。此外,还显示了由CIUDEN在西班牙里昂运营的中试氧气燃烧锅炉获得的结果。

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