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Corrosion in the Flue Gas Cleaning System of a Biomass-Fired Power Plant

机译:生物质发电厂烟气净化系统的腐蚀

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摘要

After only a few years operation, corrosiondamage was observed in the flue gas cleaning system of abiomass power plant. The corrosion was on the lower partof the gas/gas heat exchanger fabricated from A242weathering steel, where UNS S31600 bolts were used toattach sealing strips to the rotor. Thick iron oxides (up to5 mm) had formed on the weathering steel, and theseoxides also contained chlorine and sulfur. In this area of theheat exchanger, weathering steel has not had the optimalwet/dry cycles required to achieve a protective oxide. Dueto the thick growing oxide on the rotor, the UNS S31600bolts were under stress and this together with the presenceof accumulated chlorine between the sealing strips andbolts resulted in stress corrosion cracking and rupture. Inaddition, Zn-K-Cl deposits were agglomerated in the ductafter the DeNOx unit. Zn was also a constituent of corrosionproducts in various places in the ducts resulting inhygroscopic compounds. The presence of Zn in these caseswas not from the fuel and is assumed to have originatedfrom Zn containing primer (used to protect the plant duringconstruction) reacting with flue gas constituents containingchlorine (KCl and HCl).
机译:短短几年的运行后,在生物质发电厂的烟气净化系统中观察到腐蚀损坏。腐蚀发生在由A242耐候钢制成的气体/气体热交换器的下部,其中使用UNS S31600螺栓将密封条连接到转子上。在耐候钢上形成了厚厚的氧化铁(最大5毫米),这些氧化铁还包含氯和硫。在热交换器的这一区域,耐候钢没有实现保护性氧化物所需的最佳湿/干循环。由于转子上不断增长的氧化物,UNS S31600螺栓受到应力作用,这与密封条和螺栓之间积累的氯气一起导致应力腐蚀裂纹和破裂。另外,在脱硝单元之后,管道中的Zn-K-Cl沉积物会聚结。锌还是管道内各个部位腐蚀产物的组成,导致吸湿性化合物的产生。在这些情况下,锌的存在并非来自燃料,并且被认为是由含锌底漆(用于在施工过程中保护植物)与含氯烟道气成分(KCl和HCl)反应而产生的。

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