首页> 外文期刊>Journal of pipeline engineering >Transport of gaseous and dense carbon dioxide in pipelines: is there an internal corrosion risk?
【24h】

Transport of gaseous and dense carbon dioxide in pipelines: is there an internal corrosion risk?

机译:管道中气态和致密二氧化碳的运输:是否存在内部腐蚀风险?

获取原文
获取原文并翻译 | 示例
           

摘要

Transporting anthropogenic CO_2 in pipelines is an essential component in the realization and implementation of carbon capture and storage (CCS).Transportation of dense CO_2 has generally been the preferred economic solution, but projects in the UK have also considered transportation of gaseous CO_2.Whichever option is selected, provision may need to be made to mitigate or prevent internal corrosion. This will require identifying and defining in the CO_2 specification the maximum levels of water and impurities, such as nitrogen oxides (NOJ and sulphur oxides (SO_x), so that internal corrosion risks are maintained at an acceptable level throughout the proposed service life of a pipeline. Equally, should there be a process upset in the CO_2 stream conditioning procedure (for example, a failure of a dehydration unit), then potential internal-corrosion risks will need to be clearly defined in order to establish an effective mitigation strategy that maintains pipeline integrity. This paper reviews available corrosion data in the public domain for carbon steel exposed to gaseous and dense CO_2 in the presence of impurities.The paper will describe different corrosion scenarios in pipelines transporting anthropogenic CO_2 and interpret associated corrosion risks from published data. Gaps in knowledge and the requirement for further work will be highlighted.
机译:在管道中运输人为的CO_2是实现碳捕集与封存(CCS)的重要组成部分。运输密集的CO_2通常是首选的经济解决方案,但英国的项目也考虑了运输气态CO_2。如果选择了,则可能需要采取措施减轻或防止内部腐蚀。这将需要在CO_2规范中确定和定义最大量的水和杂质,例如氮氧化物(NOJ和硫氧化物(SO_x)),以便在拟议的管道使用寿命内将内部腐蚀风险保持在可接受的水平同样,如果在CO_2物流调节过程中出现过程不正常的情况(例如,脱水单元的故障),则需要明确定义潜在的内部腐蚀风险,以便建立有效的缓解策略来维持管道本文回顾了在有杂质存在下暴露于气态和致密CO_2的碳钢在公共领域中可获得的腐蚀数据。本文将描述运输人为CO_2的管道中的不同腐蚀情况,并从已公开的数据中解释相关的腐蚀风险。知识和进一步工作的要求将被强调。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号