Page 204 - Дисертація_Влад_Христина_Ігорівна
P. 204
[267] Xiao, Y., Wu, C.L., Wu, H.W., Chen, Y.G.: Hydrogen generation by CaH₂-
induced hydrolysis of Mg₁₇Al₁₂ hydride. Int. J. Hydrogen Energy 36, 15698–15703
(2011). https://doi.org/10.1016/j.ijhydene.2011.09.022
[268] Jiang, J., Ouyang, L., Wang, H., Liu, J., Shao, H., Zhu, M.: Controllable
hydrolysis performance of MgLi alloys and the hydrides. ChemPhysChem 20, (2019).
https://doi.org/10.1002/cphc.201900058
[269] Xiao, F., Guo, Y., Yang, R., Li, J.: Hydrogen generation from hydrolysis of
activated magnesium/low-melting-point metals alloys. Int. J. Hydrogen Energy 44,
(2018). https://doi.org/10.1016/j.ijhydene.2018.11.165
[270] Grosjean, M.-H., Zidoune, M., Roué, L., Huot, J.-Y.: Hydrogen production via
hydrolysis reaction from ball-milled Mg-based materials. Int. J. Hydrogen Energy 31,
109–119 (2006)
[271] Zhao Z, Zhu Y, Li L. Efficient catalysis by MgCl₂ in hydrogen generation via
hydrolysis of Mg-based hydride prepared by hydriding combustion synthesis. Chem.
Commun. 2012, 48:5509–5511.
[272] Li S, Gan D, Zhu Y, Liu Y, Zhang G, Li L. Influence of chloride salts on
hydrogen generation via hydrolysis of MgH₂ prepared by hydriding combustion
synthesis and mechanical milling. Trans. Nonferrous Met. Soc. China 2017, 27:562–
568.
[273] Liang Z, Li Q, Li F, Zhao S, Xia X. Hydrogen generation from hydrolysis of
NaBH₄ based on high stable NiB/NiFe₂O₄ catalyst. Int. J. Hydrogen Energy 2017,
42:3971–3980.
[274] Kytsya A, Berezovets V, Verbovytskyy Y, Bazylyak L, Kordan V, Zavaliy I, et
al. Bimetallic Ni–Co nanoparticles as an efficient catalyst of hydrogen generation via
hydrolysis of NaBH₄. J. Alloys Compd. 2022, 908:164484.
[275] Muir S.S., Yao X. Progress in sodium borohydride as a hydrogen storage
material: development of hydrolysis catalysts and reaction systems. Int. J. Hydrogen
Energy 2011, 36:5983–5997.
[276] Brack P, Dann S.E., Wijayantha K.G.U. Heterogeneous and homogeneous
catalysts for hydrogen generation by hydrolysis of aqueous sodium borohydride
(NaBH₄) solutions. Energy Sci. Eng. 2015, 3:174–188.
[277] Xu D, Zhang Y, Guo Q. Research progress on catalysts for hydrogen
generation through sodium borohydride alcoholysis. Int. J. Hydrogen Energy 2022,
47:5929–5946.
[278] Huang Z.M., Su A, Liu Y.C. Hydrogen generator system using Ru catalyst for
PEMFC (proton exchange membrane fuel cell) applications. Energy 2013, 51:230–
236.
202