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Failure mechanisms and material degradation processes at high temperatures in ammonia synthesis

机译:氨合成中高温下的失效机理和材料降解过程

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Ammonia has been manufactured on an industrial scale for almost 100 years. Nevertheless, this process still presents a challenge to the materials involved and to the material engineers who are responsible for the selection of materials. This is due to the temperatures and the media handled. Failure mechanisms that have been known in ammonia plants since the industrial production of ammonia started are hydrogen attack, creep and embrittlement. Since the new generation of plants characterised by optimised heat recovery have been in service, metal dusting has emerged as a relatively common problem in ammonia plants following the secondary reformer. In the present study, the wide range of failure mechanisms and material degradation processes observed in ammonia plants is illustrated by a number of examples, some of which relate to the historical development of the process.
机译:氨已经以工业规模生产了近100年。然而,该过程仍然对所涉及的材料以及负责材料选择的材料工程师提出了挑战。这是由于温度和所处理的介质引起的。自从氨工业化生产以来,氨工厂中已知的失效机制是氢侵蚀,蠕变和脆化。自具有最佳热回收功能的新一代装置投入使用以来,金属粉尘已成为继二级重整装置之后的氨装置中相对普遍的问题。在本研究中,通过许多示例说明了在氨厂中观察到的各种故障机理和材料降解过程,其中一些与该过程的历史发展有关。

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