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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Corrosion behavior of Haynes (R) 230 (R) nickel-based super-alloys for integrated coal gasification combined cycle syngas plants: A plant exposure study
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Corrosion behavior of Haynes (R) 230 (R) nickel-based super-alloys for integrated coal gasification combined cycle syngas plants: A plant exposure study

机译:Haynes(R)230(R)镍基超级合金对整体煤气化联合循环合成气工厂的腐蚀行为:工厂暴露研究

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摘要

The corrosion behavior of commercially available Haynes (R) 230 (R) nickel-based alloy samples was investigated by exposure to coal-gasifying integrated coal gasification combined cycle pilot plant facilities affiliated with the Institute for Advanced Engineering (2.005 MPa and 160-300 degrees C). The morphological and microstructural analyses of the exposed samples were conducted using scanning electron microscopy and energy-dispersive X-ray spectroscopy analysis on the external surface of the recovered corrosion test samples to obtain information of the corrosion scale. These analyses based on the pre- and post-exposure corrosion test samples combined with thermodynamic Ellingham-Pourbaix stability diagrams provided preliminary insight into the mechanism of the observed corrosion behavior prevailing in the piping materials that connected the particulate removal unit and water scrubber of the integrated coal gasification combined cycle pilot plant. Uniform material wastage was observed after 46 hours of operation, and a preliminary corrosion mechanism was suggested: the observed material waste and corrosion behavior of the Haynes (R) 230 (R) nickel-based alloy samples cut off from the coal syngas integrated coal gasification combined cycle plant were explained by the formation of discontinuous (complex) oxide phases and subsequent chlorine-induced active oxidation under the predominantly reducing environment encountered. This contribution continues the already published studies of the Fe-Ni-Cr-Co alloy Haynes (R) 556 (R)
机译:通过暴露于高级工程学院(2.005 MPa和160-300度)的煤气化综合煤气化联合循环试验工厂设施中,研究了市售的Haynes(R)230(R)镍基合金样品的腐蚀行为C)。使用扫描电子显微镜和能量色散X射线光谱分析法对回收的腐蚀测试样品的外表面进行暴露样品的形态和微观结构分析,以获得腐蚀规模的信息。这些基于暴露前和暴露后腐蚀测试样品以及热力学Ellingham-Pourbaix稳定性图的分析提供了初步了解,观察到在连接集成式除尘器和水洗器的管道材料中普遍存在的腐蚀行为机理。煤气化联合循环中试装置。在运行46小时后,观察到均匀的材料浪费,并提出了初步的腐蚀机理:从煤合成气整体煤气化中分离出的Haynes(R)230(R)镍基合金样品的观察到的材料浪费和腐蚀行为在遇到的主要还原环境下,通过形成不连续的(复杂的)氧化物相和随后的氯诱导的活性氧化来解释联合循环工厂。这一贡献延续了已经发表的有关Fe-Ni-Cr-Co合金Haynes(R)556(R)的研究。

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