Using XANES to obtain mechanistic information for the hydrolysis of CuCl2 and the decomposition of Cu2OCl2 in the thermochemical Cu–Cl cycle for H2 production

Author:

Ferrandon M.,Daggupati V.,Wang Z.,Naterer G.,Trevani L.

Publisher

Springer Science and Business Media LLC

Reference20 articles.

1. Naterer G, Suppiah S, Stolberg L, Lewis M, Ferrandon M, Wang Z, Dincer I, Gabriel K, Rosen MA, Secnik E, Easton EB, Trevani L, Pioro I, Tremaine P, Lvov S, Jiang J, Rizvi G, Ikeda BM, Lu L, Kaye M, Smith WR, Mostaghimi J, Spekkens P, Fowler M, Avsec J. Clean hydrogen production with the Cu–Cl cycle—progress of international consortium, II: simulations, thermochemical data, and materials. Int J Hydrog Energy. 2011;36(24):15486–501.

2. Naterer G, Suppiah S, Stolberg L, Lewis M, Ferrandon M, Wang Z, Dincer I, Gabriel K, Rosen MA, Secnik E, Easton EB, Trevani L, Pioro I, Tremaine P, Lvov S, Jiang J, Rizvi G, Ikeda BM, Lu L, Kaye M, Smith WR, Mostaghimi J, Spekkens P, Fowler M, Avsec J. Clean hydrogen production with the Cu–Cl cycle—progress of international consortium, I: experimental unit operations. Int J Hydrog Energy. 2011;36(24):15472–85.

3. Ferrandon MS, Lewis MA, Alvarez F, Shafirovich E. Hydrolysis of CuCl2 in the Cu–Cl thermochemical cycle for hydrogen production: experimental studies using a spray reactor with an ultrasonic atomizer. Int J Hydrog Energy. 2010;35(5):1895–904.

4. Ferrandon MS, Lewis MA, Tatterson DF, Gross A, Doizi D, Croize L, Dauvois V, Roujou JL, Zanella Y, Carles P. Hydrogen production by the Cu–Cl thermochemical cycle: investigation of the key step of hydrolysing CuCl2 to Cu2OCl2 and HCl using a spray reactor. Int J Hydrog Energy. 2010;35(3):992–1000.

5. Daggupati VN, Naterer GF, Gabriel KS, Gravelsins RJ, Wang ZL. Equilibrium conversion in Cu–Cl cycle multiphase processes of hydrogen production. Thermochim Acta. 2009;496:117–23.

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