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Current practical measures for cracking failures of high pressure equipment in aqueous environments containing hydrogen sulfide

机译:在含硫化氢的水环境中高压设备开裂故障的现行实用措施

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Low temperature hydrogen damage of carbon and micro alloyed steels can occur in aqueous environments containing hydrogen sulfide which are commonly observed in petroleum refineries and in oil and gas transportation pipelines. These damage mechanisms have been reported to include sulfide stress cracking (SSC), hydrogen induced cracking (HIC), and stress oriented hydrogen - induced cracking (SOHIC). In addition, stress corrosion cracking of carbon steel weldments has been identified in amine units to remove acid components such as hydrogen sulfide and carbon dioxide from gas and liquid hydrocarbon stream in gas processing plants, refineries, and petrochemical plants. In this report, published information on the past experiences of hydrogen damage of carbon and micro - alloyed steels in aqueous environments containing hydrogen sulfide has been reviewed. As a result, it is revealed that a potential risk for occurrence of the damage in newly fabricated equipment has been significantly degreased owing to the steel making practice to produce highly purified and very clean steel products. Furthermore, it is highlighted that a lot of technical standards providing guidelines to mitigate the damage have been established for new fabrication as well as existing equipment in the last decade.
机译:在含硫化氢的含水环境中,碳和微合金钢的低温氢破坏会发生,这在石油精炼厂和油气输送管道中通常会观察到。据报道,这些破坏机理包括硫化物应力开裂(SSC),氢诱导开裂(HIC)和应力取向的氢诱导开裂(SOHIC)。另外,已经在胺单元中发现了碳钢焊件的应力腐蚀开裂,以从气体加工厂,精炼厂和石化厂的气体和液态烃流中除去酸性成分,例如硫化氢和二氧化碳。在此报告中,已回顾了有关碳和微合金钢在含硫化氢的水环境中氢破坏过去经验的公开信息。结果表明,由于生产高纯度和非常清洁的钢铁产品的炼钢实践,已经大大降低了在新制造的设备中发生损坏的潜在风险。此外,要强调的是,在过去的十年中,已经为新制造以及现有设备建立了许多技术准则,这些准则为减轻损害提供了指南。

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