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International Hydrogen Conference, Jackson Lake Lodge, Grand Teton National
Park, Wyoming, USA, September 9–12, 2012.
114. Nguyen T. T., Park J., Kim W. S. et al. Effect of low partial hydrogen
in a mixture with methane on the mechanical properties of X70 pipeline steel.
International Journal of Hydrogen Energy. 2020. Vol. 45, Iss. 3. P. 2368–2381.
115. Nguyen T. T., Heo H. M., Park J. et al. Fracture properties and fatigue
life assessment of API X70 pipeline steel under the effect of an environment
containing hydrogen. Journal of Mechanical Science and Technology. 2021. Vol.
35. P. 1445–1455.
116. Martin M. L., Connolly M., Buck Z. N. et al. Evaluating a natural gas
pipeline steel for blended hydrogen service. Journal of Natural Gas Science and
Engineering. 2022. Vol. 101. Article No. 104529.
117. Steiner M., Marewski U., Silcher H. DVGW Project SyWeSt H₂:
Investigation of Steel Materials for Gas Pipelines and Plants for Assessment of
their Suitability with Hydrogen. Bonn, 2023.
118. Tazedakis A. S., Voudouris N., Dourdounis E. et al. Qualification of
high-strength linepipes for hydrogen transportation based on ASME B31.12 code.
Pipeline Technology Journal. 2021. Vol 1. P. 42–50.
119. Bouledroua O., Hafsi Z., Djukic M. B. et al. The synergistic effects of
hydrogen embrittlement and transient gas flow conditions on integrity assessment
of a precracked steel pipeline. International Journal of Hydrogen Energy. 2020.
Vol. 45. P. 18010–18020.
120. Dadfarnia M., Sofronis P., Brouwer J. et al. Assessment of resistance
to fatigue crack growth of natural gas line pipe steels carrying gas mixed with
hydrogen. International Journal of Hydrogen Energy. 2019. Vol. 44. P. 10808–
10822.
121. Álvarez G., Zafra A., Belzunce F. J. et al. Effect of internal hydrogen
on the fatigue crack growth rate in the coarse-grain heat-affected zone of a CrMo
steel. Metals. 2022. Vol. 12. Article No. 673.

