[1]
T.Q. Zhu: Low Temperature and Specialty Gases Vol. 04 (2010), pp.1-3.
Google Scholar
[2]
X.Q. Lin, Y.H. He, Y. Jiang and F.S. Zhang: Materials ReviewVol. 19 (2005), pp.33-36.
Google Scholar
[3]
X.Z. Kong: Low Temperature and Specialty Gases Vol. 04(1994), pp.30-32.
Google Scholar
[4]
C.P. Chen, Q.D. Wang and J. Wu: Chemical Engineering (China) Vol. 5(1987), pp.64-69.
Google Scholar
[5]
M. Aou, C.P. Chen ,T.S. Fang and J. Wu: Glass Vol. 05 (1991), pp.8-11.
Google Scholar
[6]
X.T. Lai, S.Q. Li, X.H. Wang and C.P. Chen: Chemical Engineering(China) Vol. 3(1994), pp.37-40.
Google Scholar
[7]
B.L. Sheng: China Chlor-Alkali Vol. 08 (2003), pp.7-13.
Google Scholar
[8]
Q.E. XiTian and X.C. Kang: Low Temperature and Specialty Gases Vol. 03(1987), pp.31-36.
Google Scholar
[9]
G.W. Gu,J. Chen and Y.C. Hao: Low Temperature and Specialty GasesVol. 4(1998), pp.25-30.
Google Scholar
[10]
Y.M. Wu,Q.S. Yi and Q.F. Zhu: Journal Of Wuhan University Of Technology Vol. 28 (2006), pp.121-125.
Google Scholar
[11]
Q.D. Wang,J. Wu,C.P. Chen W.F. Luo and T.S. Fang: Bulleting Of Science And Technology Vol. 03(1985), pp.42-44.
Google Scholar
[12]
D. Dunikov, V. Borzenko and S. Malyshenko: International Journal Of Hydrogen Energy Vol. 37 (2012), pp.13843-13848.
DOI: 10.1016/j.ijhydene.2012.04.078
Google Scholar
[13]
D.V. Blinov V.I. Borzenko, D.O. Dunikov and S.P. Malyshenko: Proceedings Of The International Conference Nanomaterials: Applications And Properties Vol. 3 (2012), p.3.
Google Scholar
[14]
V.I. Artemov, G.G. Yankov and D.O. Lazarev: Heat Transfer Research. Vol. 35 (2004), pp.108-125.
Google Scholar
[15]
C.P. Chen Q.D. Wang,J. Wu and W. F Luo: Chinese Rare Earths Vol. 01(1986), pp.1-6.
Google Scholar
[16]
Y.Z. Hu,G.P. Dan,L. Du,D. Zhang B.J. Mao and Y.Z. Sun: Chemical Research And Application Vol. 07 ( 2012), pp.1009-1014.
Google Scholar
[17]
J.P. Li, D.M. Li and W.P. Lang: Mining And Metallurgical Engineering Vol. 04 (1994), pp.61-63.
Google Scholar
[18]
X.L. Wang, K. Iwata and S. Suda: Journal of Alloys and Compounds Vol. 231(1995), pp.860-864.
Google Scholar
[19]
J.W. Zhang, C.P. Chen L.H. Gao and L.X. Chen: Journal Of Chemical Industry And Engineering (china) Vol. S1 ( 2004), pp.159-162.
Google Scholar
[20]
M. W. Davids , M. Lototskyy , A. Nechaev and Q Naidoo : International Journal of Hydrogen Energy Vol. 36 (2011), pp.9743-9750.
Google Scholar
[21]
R. B. Wright and I. Falls, U.S. Patent 5, 081, 083. ( 1992).
Google Scholar
[22]
W.H. Wan Y.G. Tang L.Z. Guang Z.J. Zhu andZ.H. Xie: J. Cent. South Univ. (Science and Technology) Vol. 38(2007), pp.107-111.
Google Scholar
[23]
W.X. CAO,C. Feng, L.W. Wang and R.Z. Wang: Chemical Engineering (China)Vol. 01 (2010), pp.18-21.
Google Scholar
[24]
D.W. Sun: Chemical Engineering (China) Vol. 04(1987), pp.29-34.
Google Scholar
[25]
H.W. Ge, X.H. Wang, H. Li, L.X. Chen, S.Q. Li and C.P. Chen, J.Y. Zheng: Acta Energiae Solaris Sinica Vol. 05 ( 2009), pp.713-716.
Google Scholar
[26]
Y. Zhang, X.H. Wang, G.H. Fang, S.Q. LI,L.X. Chen and C.P. Chen: Journal of Materials Science & Engineering Vol. 01 (2006), pp.97-100.
Google Scholar
[27]
Y.J. Ke, W. Wang and Y.H. Wang: Heavy Machinery Vol. S2 (2010), pp.50-53.
Google Scholar
[28]
J.H. Tao and L. Sun: Jounal of Henan University of Urban Construction Vol. 5 (2010), pp.7-13.
Google Scholar
[29]
V. I. Artemov, D. O. Lazarev, G. G. Yankov and V. I. Borzenko: Heat And Mass Transfer Vol. 42 (2004), pp.987-995.
Google Scholar
[30]
S. Miura, A. Fujisawa and M. Ishida: International Journal Of Hydrogen Energy Vol. 37 (2012), pp.2794-2799.
Google Scholar
[31]
P.L. Zhang, J. Ge, G.P. Luo and Y.G. Zhu: Gases Separation Vol. 06(2010), pp.52-57.
Google Scholar
[32]
M. Hampton,D. Slattery. Metal Hydrides for Hydrogen Separation, Recovery and Purification[R]. Florida Universities: NASA, (2009).
Google Scholar
[33]
V.I. Borzenko, D.V. Blinov, D.O. Dunikov, S.P. Malyshenko: Reversible Solid State Hydrogen Storage System Integrated with PEM Fuel Cell. Proceedings of the WHEC. (2010).
Google Scholar
[34]
B. Liang Z.X. Zhang and Y.Q. Wang: A Review On Metal Hydride Recator. Proceedings Of Chinese Society of Engineering Thermophysics thermodynamic heat engine pneumatic Conference(In Chinese). (2003), pp.165-169.
Google Scholar
[35]
F.S. Yang, X.Y. Meng, J.Q. Deng, Y.Q. Wang and ZX Zhang: International Journal Of Hydrogen Energy Vol. 33 (2008), pp.1014-1022.
Google Scholar
[36]
F.S. Yang , G.X. Wang, Z.X. Zhang and V. Rudolph: International Journal Of Hydrogen Energy Vol. 35 (2010), pp.9725-9735.
Google Scholar
[37]
G.X. Wang, F.S. Yang , Z.X. Zhang , X. Feng and Q.F. Guo: Journal Of Xi'An Jiao Tong University Vol. 40. (2006), pp.831-835.
Google Scholar
[38]
K.J. LI, Q.A. Li, S.Y. LI, Q. Zhang, X.Y. Zhang and J.B. Wen: ShangHai Nonferrous Metals Vol. 27 ( 2006), pp.32-35.
Google Scholar
[39]
D.L. Cao, P. Du, H.Y. Leng, D.M. Chen, M.Q. Lü and K. Yang: special casting & nonferrous alloys Vol. 06 (2003), pp.36-38+69.
Google Scholar
[40]
D.O. Dunikov, I.A. Romanov and S.V. Mitrokhin: Development of Intermetallic Compounds for Hydrogen Supply System Integrated with PEM Fuel Cell, Proceedings of the WHEC. (2010).
Google Scholar