

A REVIEW OF HYDROGEN STORAGE SYSTEMS BASED ON BORON AND ITS COMPOUNDS
https://doi.org/10.15518/isjaee.2018.07-09.086-094
Abstract
About the Authors
Enis FakioğluTurkey
Faculty of Engineering and Natural Sciences
Yuda Yürüm
United States
T. Nejat Veziroğlu
United States
Ph.D. in Heat Transfer, Professor, President of International Association for Hydrogen Energy, member of 18 scientific organizations
References
1. Momirlan M., Veziroglu T.N. Renewable Sustainable Energy Rev., 2002;6:141–79.
2. Stasinevic D.S., Egorenko G.A. Russ. J. Inorg. Chem., 1968;13(3):341–3.
3. Zuttel A., Wenger P., Rentsch S., Sudan P., Mauron Ph., Emmenegger Ch. J. Power Sources., 2003;118:1–7.
4. Slattery D.K., Hampton M.D. Proceedings of the 2002 US DOE Hydrogen Program Review, NREL/CP610-32405, Florida.
5. Ashby E.C., Kobetz P. Inorg. Chem., 1966;5:1615.
6. Mikhieva V.I., Arkhipov S.M. Russ. J. Inorg. Chem., 1967;12:1066.
7. Dilts J.A., Ashby E.C. Inorg. Chem., 1971;11(6):1230–6.
8. Bogdanovic B., Schwickardi M. J. Alloys Compounds., 1997;253–254:1–9.
9. Zaluski L., Zaluska A., Strom-Olsen J.O. J. Alloys Compounds., 1999;290:71–8.
10. Jensen C.M., Zidan R., Mariels N., Hee A., Hagen C. Int. J. Hydrogen Energy., 1999;24:461–5.
11. Meisner G.P., Tibbetts G.G., Pinkerton F.E., Olk C.H., Balogh M.P. J. Alloys Compounds, 2002;337:254–63.
12. Artz G.D., Grant L.R. US Pat. 4468263, August 28, 1984.
13. Ayers O.E., Patrick R.E. US Pat. 3948699, April 6, 1976.
14. Chew W.M., Ayers O.E, Murfree J.A., Martignoni P. US Pat. 4061512, December 20, 1977.
15. Chew W.M., Ayers O.E., Murfree J.A., Martignoni P. US Pat. 4064225.
16. Beckert W.F., Barber W.H., Dengel O.H. US Pat. 4231891, November 4, 1980.
17. English W.D., Chew W.M. US Pat. 4315786, February 16, 1982.
18. Chew W.M., Murfree J.A., Martignoni P., Nappier H.A., Ayers O.E. US Pat. 4157927, June 12, 1979.
19. Cavalleri R.J. Hydrogen Energy Part B. Proceedings of Hydrogen Economy Miami Energy Conference, Florida, 1975, p. 677–84.
20. Hu M.G., Geanangel R.A., Wendlandt W.W. Thermochim. Acta., 1978;23:249–55.
21. Wolf G., Baumann J., Baitalow F., Hofmann FP. Thermochim. Acta., 2000;343:19–25.
22. Shore S.G., Parry R.W. J. Am. Chem. Soc., 1957;77:6084–5.
23. Shore S.G., Parry R.W. J. Am. Chem. Soc., 1958;80:12–5.
24. Schlesinger H.I., Brown H.C., Finholt A.E., Gilbreath J.R., Hoekstra H.R., Hyde E.K. J. Am. Chem. Soc., 1953;75:215–9.
25. Aiello R., Matthews M.A., Reger D.L., Collins J.E. Int. J. Hydrogen Energy, 1998;23(12):1103–8.
26. Kong V.C.Y., Foulkes F.R., Kirk D.W., Hinatsu J.T. Int. J. Hydrogen Energy, 1999;24:665–75.
27. Amendola S.C., Sharp-Goldman S.L., Janjua M.S., Spencer M.S., Kelly M.T., Petillo P.J., Binder M. Int. J. Hydrogen Energy, 2000;25:969–75.
28. Amendola S.C., Sharp-Goldman S.L., Janjua M.S., Spencer N.S., Kelly M.T., Petillo P.J., Binder M. J. Power Sources, 2000;85:186–9.
29. Aiello R., Sharp J.H., Matthews M.A. Int. J. Hydrogen Energy, 1999;24:1123–30.
30. Huot, Liang G., Schulz R. J. Alloys Compounds., 2003;353: L12–5.
31. Tadokoro M., Nogami M., Chikano Y., Kimoto M., Ise T., Nishio K., Furukawa N. J. Alloys Compounds., 1993;192:179–81.
32. Luan B., Cui N., Zhao H.J., Liu H.K., Dou S.X. Int. J. Hydrogen Energy, 1996;21(5):373–9.
33. Hu W.K., Ye Z., Noreus D. J. Alloys Compounds, 1998;280:314–20.
34. Ye H., Zhang H., Wu W.Q., Huang T.S. J. Alloys Compounds, 2000;312:68–76.
35. Ye H., Huang Y.X., Huang T.S., Zhang H. J. Alloys Compounds, 2002;330–332:866–70.
36. Ye H., Huang Y., Chen J., Zhang H. J. Power Sources, 2002;103:293–9.
37. Wu X.B., Chen P., Lin J., Tan K.L. Int. J. Hydrogen Energy, 2000;25:262.
38. Mellor I.M., Mortimer R.J., Turpin M. Ext. Abst. 24th Biennal Conference on Carbon, Charleston, 1999, p. 623.
39. Fan Y.Y., Liao B., Liu M., Wei Y.L., Cheng M.Q.L., Cheng H.M. Carbon, 1999;37:1649.
40. Tibbetts G.G., Meisner G.P., Olk C.H. Carbon, 2001;39:2291–301.
41. Wang P., Orimo S., Matsushima T., Fujii H. Appl. Phys. Lett., 2002;80(2):318–20.
42. Oku T., Kuno M., Kitahara H., Narita I. Int. J. Inorg. Mater., 2001;3:597–612.
43. Oku T., Narita I. Physica B, 2002;323:216–8.
44. Oku T., Kuno M. Diamond Relat. Mater., 2003;12:840–5.
45. Ma R., Bando Y., Zhu H., Sato T., Xu C., Wu D. J. Am. Chem. Soc., 2002;124:7672–3.
46. Oertel M., Weirich W., Kugler B., Lucke L., Pietsch M., Winkelmann U. Int. J. Hydrogen Energy, 1987;12(4):211–7.
47. Zuttel A., et al. Hydrogen desorption from lithiumtetrahydroboride. Proceedings, 14th WHEC, June 2002.
48. Kojima Y., Haga T. Int. J. Hydrogen Energy, 2003;28:989–93.
Review
For citations:
Fakioğlu E., Yürüm Yu., Veziroğlu T.N. A REVIEW OF HYDROGEN STORAGE SYSTEMS BASED ON BORON AND ITS COMPOUNDS. Alternative Energy and Ecology (ISJAEE). 2018;(7-9):86-94. (In Russ.) https://doi.org/10.15518/isjaee.2018.07-09.086-094