91. Rosen, M.A., “Developments in the production of hydrogen by thermochemical water
decomposition,” International Journal of Energy and Environmental Engineering, 2 (2),
1–20 (2011).
92. Steinfeld, A. and Palumbo, R., “Solar thermochemical process technology,” in Meyers,
R. (ed.), Encyclopedia of Physical Science and Technology. Academic Press, New York,
Vol. 15, 237–256 (2001).
93. Funk, J.E., Conger, W.L., and Cariy, R.H., “Evaluation of multi-step thermochemical processes for the production of hydrogen from water,” Proceedings of the THEME
Conference, March, Miami, FL, Sll-.ll (1974).
94. Chao, R.E., “Thermochemical water decomposition processes,” Industrial &
Engineering Chemistry Process Design and Development, 13 (2), 94–101 (1974).
95. Weimer, A., “II.1.2 fundamentals of a solar-thermal hydrogen production process
using a metal oxide based thermochemical water splitting cycle,” DOE Contract No.
DE-FC36-05G015044, Annual Progress Report (2006).
96. Roeb, M. and Sattler, C., “HycycleS—Materials and components of hydrogen production by sulfur based thermochemical cycles,” FPS-Energy-212470, German Aerospace
Center (DLR), Solar research report (2010).
97. Law, V.J., Prindle, J.C., and Gonzales, R.B., “Analysis of the copper sulfate cycle for
the thermochemical splitting of water for hydrogen production,” Paper submitted
for presentation at the 2007 AIChE National Meeting, November, Salt Lake City, UT
(2007).
98. Law, V.J., Prindle, J.C., and Gonzales, R.B., “Level 1 and level 2 analysis of the copper sulfate cycle for the thermochemical splitting of water for hydrogen production,”
Contract No. 6F-003762, Argonne National Laboratory, Lemont, IL (July 2006).
99. Law, V.J., Prindle, J.C., and Gonzales, R.B., “Level 3 analysis of the copper sulfate
cycle for the thermochemical splitting of water for hydrogen production,” Contract No.
6F-003762, Argonne National Laboratory, Lemont, IL (August 2006).
100. Law, V.J., Prindle, J.C., Bang, R., Hoerger, K., and Ledbetter, J., “Progress report no. 1
experimental studies of the hydrogen generation reaction for the CuSO 4 cycle,” Contract
No. 6F-01144, Argonne National Laboratory, Lemont, IL (October 2006).
101. Law, V.J., Prindle, J.C., Bang, R., Hoerger, K., and Ledbetter, J., “Progress report no. 2,
experimental studies of the hydrogen generation reaction for the CuSO 4 cycle,” Contract
No. 6F-01144, Argonne National Laboratory, Lemont, IL (January 2007).
102. Law, V.J., Prindle, J.C., Bang, R., Hoerger, K., and Ledbetter, J., “Progress report no. 3,
experimental studies of the hydrogen generation reaction for the CuSO 4 cycle,” Contract
No. 6F-01144, Argonne National Laboratory, Lemont, IL (March 2007).
103. Law, V.J., Prindle, J.C., Bang, R., Hoerger, K., and Ledbetter, J., “Progress report no. 4,
experimental studies of the hydrogen generation reaction for the CuSO 4 cycle,” Contract
No. 6F-01144, Argonne National Laboratory, Lemont, IL (May 2007).
104. Law, V.J., Prindle, J.C., and Lupulescu, A.I., “Aspen plus modeling of the three-reaction
version of the copper-chloride thermochemical cycle for hydrogen production from
water,” Contract No. 6F-01144, Argonne National Laboratory, Lemont, IL (August
2007).
105. Law, V., Prindle, J., and Gonzales, R., “Analysis of the copper sulphate cycle for the
thermochemical splitting of water for hydrogen production,” Chemical Engineering
Department, Tulane University, New Orleans, LA (2010).
106. Roeb, M., Sattler, C., Kluser, R., Monnerie, N., Oliveira, L., Konstandopoulos, A.,
Agrafiotis, C. et al., “Solar hydrogen production by a two step cycle based on mixed
iron oxides,” Journal of Solar Energy Engineering, 128, 125–133 (2006).
107. T-Raissi, A., Huang, C., and Muradov, N., “Hydrogen production via solar thermochemical water splitting,” NASA/CR-2009-215441, Report of research for period March
2004–February 2008 (2009).
326
Water for Energy and Fuel Production
decomposition,” International Journal of Energy and Environmental Engineering, 2 (2),
1–20 (2011).
92. Steinfeld, A. and Palumbo, R., “Solar thermochemical process technology,” in Meyers,
R. (ed.), Encyclopedia of Physical Science and Technology. Academic Press, New York,
Vol. 15, 237–256 (2001).
93. Funk, J.E., Conger, W.L., and Cariy, R.H., “Evaluation of multi-step thermochemical processes for the production of hydrogen from water,” Proceedings of the THEME
Conference, March, Miami, FL, Sll-.ll (1974).
94. Chao, R.E., “Thermochemical water decomposition processes,” Industrial &
Engineering Chemistry Process Design and Development, 13 (2), 94–101 (1974).
95. Weimer, A., “II.1.2 fundamentals of a solar-thermal hydrogen production process
using a metal oxide based thermochemical water splitting cycle,” DOE Contract No.
DE-FC36-05G015044, Annual Progress Report (2006).
96. Roeb, M. and Sattler, C., “HycycleS—Materials and components of hydrogen production by sulfur based thermochemical cycles,” FPS-Energy-212470, German Aerospace
Center (DLR), Solar research report (2010).
97. Law, V.J., Prindle, J.C., and Gonzales, R.B., “Analysis of the copper sulfate cycle for
the thermochemical splitting of water for hydrogen production,” Paper submitted
for presentation at the 2007 AIChE National Meeting, November, Salt Lake City, UT
(2007).
98. Law, V.J., Prindle, J.C., and Gonzales, R.B., “Level 1 and level 2 analysis of the copper sulfate cycle for the thermochemical splitting of water for hydrogen production,”
Contract No. 6F-003762, Argonne National Laboratory, Lemont, IL (July 2006).
99. Law, V.J., Prindle, J.C., and Gonzales, R.B., “Level 3 analysis of the copper sulfate
cycle for the thermochemical splitting of water for hydrogen production,” Contract No.
6F-003762, Argonne National Laboratory, Lemont, IL (August 2006).
100. Law, V.J., Prindle, J.C., Bang, R., Hoerger, K., and Ledbetter, J., “Progress report no. 1
experimental studies of the hydrogen generation reaction for the CuSO 4 cycle,” Contract
No. 6F-01144, Argonne National Laboratory, Lemont, IL (October 2006).
101. Law, V.J., Prindle, J.C., Bang, R., Hoerger, K., and Ledbetter, J., “Progress report no. 2,
experimental studies of the hydrogen generation reaction for the CuSO 4 cycle,” Contract
No. 6F-01144, Argonne National Laboratory, Lemont, IL (January 2007).
102. Law, V.J., Prindle, J.C., Bang, R., Hoerger, K., and Ledbetter, J., “Progress report no. 3,
experimental studies of the hydrogen generation reaction for the CuSO 4 cycle,” Contract
No. 6F-01144, Argonne National Laboratory, Lemont, IL (March 2007).
103. Law, V.J., Prindle, J.C., Bang, R., Hoerger, K., and Ledbetter, J., “Progress report no. 4,
experimental studies of the hydrogen generation reaction for the CuSO 4 cycle,” Contract
No. 6F-01144, Argonne National Laboratory, Lemont, IL (May 2007).
104. Law, V.J., Prindle, J.C., and Lupulescu, A.I., “Aspen plus modeling of the three-reaction
version of the copper-chloride thermochemical cycle for hydrogen production from
water,” Contract No. 6F-01144, Argonne National Laboratory, Lemont, IL (August
2007).
105. Law, V., Prindle, J., and Gonzales, R., “Analysis of the copper sulphate cycle for the
thermochemical splitting of water for hydrogen production,” Chemical Engineering
Department, Tulane University, New Orleans, LA (2010).
106. Roeb, M., Sattler, C., Kluser, R., Monnerie, N., Oliveira, L., Konstandopoulos, A.,
Agrafiotis, C. et al., “Solar hydrogen production by a two step cycle based on mixed
iron oxides,” Journal of Solar Energy Engineering, 128, 125–133 (2006).
107. T-Raissi, A., Huang, C., and Muradov, N., “Hydrogen production via solar thermochemical water splitting,” NASA/CR-2009-215441, Report of research for period March
2004–February 2008 (2009).
326
Water for Energy and Fuel Production
