Page 162 -
P. 162

netics and isotopic effects. Int. J. Hydrogen Energy 39(18), 9918–9923 (2014).

                   doi: 10.1016/j.ijhydene.2014.01.055

                31. Huot,  J.,  Ravnsbæk,  D.B.,  Zhang,  J.,  Cuevas,  F.,  Latroche,  M.,  Jensen,  T.R.:

                   Mechanochemical  synthesis  of  hydrogen  storage  materials.  Prog.  Mater.  Sci.

                   58(1), 30–75 (2013). doi: 10.1016/j.pmatsci.2012.07.001

                32. Sun, D., et al.: Enhancing the thermodynamic stability and kinetic properties of


                   magnesium hydride using mechanical milling with TiO . J. Mater. Chem. A 3,
                                                                                    2
                   14564–14572 (2015).


                33. Huhn, P.A., Dornheim, M., Barkhordarian, G., et al.: Thermal stability of cata-
                   lyzed  nanocrystalline  MgH   for hydrogen  storage. International  Symposium  on
                                                   2

                   Metal-Hydrogen Systems – MH2004, Kraków, Poland, 2004, Р. 125.
                34. Bobet, J.-L., Castro, F. J., and Chevalier, B.: Effects of reactive mechanical mill-


                   ing conditions on the physico-chemical properties of Mg+Cr O  mixtures. J. Al-
                                                                                            3
                                                                                         2
                   loys and Comp. 376(1–2) (2004) 205–210. doi: 10.1016/j.jallcom.2003.12.014

                35. Doppiu, S., Schultz, L., Gutfleisch, O.: In situ pressure and temperature monitor-

                   ing  during  the  conversion.  J.  Alloys  Comp.  427,  204–208  (2007).  doi:

                   10.1016/j.jallcom.2006.02.045

                36. Al Bacha, S., Pighin, S.A., Urretavizcaya, G., Zakhour, M., Castro, F.J., Nakhl,

                   M., Bobet, J.-L.: Hydrogen generation from ball milled Mg alloy waste by hy-

                   drolysis     reaction.    J.    Power      Sources      479,    228711      (2020).     doi:

                   10.1016/j.jpowsour.2020.228711

                37. Kuziora, P., Wyszyńska, M., Polanski, M., Bystrzycki, J.: Why the ball to powder

                   ratio (BPR) is insufficient for describing the mechanical ball milling process. Int.

                   J.       Hydrogen         Energy        39(18),        9883–9887          (2014).       doi:

                   10.1016/j.ijhydene.2014.03.009

                38. Huot, J., Liang, G., Boily, S., et al.: Structural study and hydrogen sorption kinet-

                   ics  of  ball-milled  magnesium  hydride.  J.  Alloys  Comp.  293–295,  495–500

                   (1999). doi: 10.1016/S0925-8388(99)00474-0

                39. Polanski, M., Bystrzycki, J., Plocinski, T.: The effect of milling conditions on mi-

                   crostructure  and  hydrogen  absorption/desorption  properties  of  magnesium  hy-



                                                                                                            162
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