Research progress on corrosion and hydrogen embrittlement in hydrogen–natural gas pipeline transportation

IF 4.2 3区 工程技术 Q2 ENERGY & FUELS Natural Gas Industry B Pub Date : 2023-12-01 DOI:10.1016/j.ngib.2023.11.001
Hongwei Zhang , Jie Zhao , Jingfa Li , Bo Yu , Jialong Wang , Ran Lyu , Qian Xi
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Abstract

Hydrogen, clean, efficient and zero-carbon, is seen as a most promising energy source. The use of existing gas pipelines for hydrogen–natural gas transportation is considered to be an effective way to achieve long-distance, large-scale, efficient, and economical hydrogen transportation. However, the pipelines for hydrogen–natural gas transportation contain lots of impurities (e.g., CH4, high-pressure H2, H2S and CO2) and free water, which will inevitably lead to corrosion and hydrogen embrittlement. This paper presents a systematic review of research and an outlook for corrosion and hydrogen embrittlement in hydrogen–natural gas pipeline transportation. The results show that gas-phase hydrogen charging is suitable for hydrogen–natural gas transportation, but this technique lacks technical standards. By contrast, the liquid-phase hydrogen charging technique is more mature but has large deviation from the engineering reality. In the hydrogen–natural gas transportation pipelines, corrosion and hydrogen embrittlement are synergetic and competitive, but the failure mechanism and change law when corrosion and hydrogen embrittlement coexist remain unclear, which need to be further clarified by experiments. The failure mechanism is believed to be mainly sensitive to three key factors, i.e., the H2S/CO2 partial pressure ratio, the hydrogen blending ratio, and material strength. The increase of the three factors will make the pipeline materials more corrosive and more sensitive to hydrogen embrittlement. The research findings can be used as a reference for research and development of long-distance hydrogen–natural gas transportation technology and will drive the high-quality development of the hydrogen–natural gas blending industry.

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氢-天然气管道运输中的腐蚀和氢脆研究进展
清洁、高效和零碳的氢被视为最有前途的能源。利用现有天然气管道进行氢气-天然气运输被认为是实现长距离、大规模、高效和经济的氢气运输的有效途径。然而,氢气-天然气输送管道中含有大量杂质(如 CH4、高压 H2、H2S 和 CO2)和游离水,不可避免地会导致腐蚀和氢脆。本文对氢-天然气管道运输中的腐蚀和氢脆问题进行了系统的研究综述和展望。研究结果表明,气相充氢适用于氢-天然气运输,但该技术缺乏技术标准。相比之下,液相充氢技术较为成熟,但与工程实际偏差较大。在氢-天然气输送管道中,腐蚀和氢脆是协同竞争的,但腐蚀和氢脆共存时的失效机理和变化规律尚不清楚,需要通过实验进一步明确。一般认为,失效机理主要受三个关键因素的影响,即 H2S/CO2 分压比、掺氢比和材料强度。这三个因素的增加会使管道材料的腐蚀性更强,对氢脆更敏感。该研究成果可为长距离氢气-天然气输送技术的研发提供参考,并将推动氢气-天然气混合产业的高质量发展。
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来源期刊
Natural Gas Industry B
Natural Gas Industry B Earth and Planetary Sciences-Geology
CiteScore
5.80
自引率
6.10%
发文量
46
审稿时长
79 days
期刊最新文献
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