Environmental Engineering Reference
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Maeda, K., Teramura, K., Lu, D., Takata, T., Saito, N., Inoue, Y. and Domen, K. (2006)
Photocatalyst releasing hydrogen from water. Nature , 440, 295.
Maegami, Y., Iguchi, F. and Yugami H. (2011) Efficient solar methane reforming using spec-
trally controlled thermal radiation produced by concentrated solar radiation. Proceedings
of the ASME 5th International Conference on Energy Sustainability ( ES2011 ). Paper No.
ES2011-54612. August 7-10, 2011, Washington, DC, USA.
MacKenzie, A., Granatstein, D. L., Anthony, E. J. and Abanades, J.C. (2007) Economics of
CO 2 capture using the calcium cycle with a pressurized fluidized bed combustor. Energy
Fuels , 21, 920-926.
Mahmoudkhani, M. and Keith, D. W. (2009) Low-energy sodium hydroxide recovery for
CO 2 capture from atmospheric air—thermodynamic analysis. International Journal of
Greenhouse Gas Control , 3, 376-384.
Makhijani, A. (2009) Nuclear power and CO 2 emission reductions comments on radioactive
waste management and relative costs of options. IEER (Institute of Energy and Environ-
mental Research). http://www.ieer.org/carbonfree/NuclearPower_wastes_and_CO 2 _cost_
reduction_considerations.pdf. Accessed on April 20th, 2010.
MartĂ­n, J. C. (2007) Solar Tres - First commercial molten salt central receiver. NREL CSP
Technology Workshop . March 7, 2007, Denver, US.
Matsunami, J., Yoshida, S. and Oku, Y. (2000) Coal gasification with CO 2 in molten salt for
solar thermal/chemical energy conversion. Energy , 25, 71-79.
McConnell, R., Symko-Davies, M. and Friedman, D. (2006) Multijunction photovoltaic tech-
nologies for high performance concentrators. Proceedings of the 2006 IEEE 4th World
Conference on Photovoltaic Energy Conversion . May 2006, Waikoloa, Hawaii.
McConnell, R. D., Lasich, J. B. and Elam, C. (2005) A hybrid solar concentrator PV system
for the electrolytic production of hydrogen. Proceedings of the 20th European Photovoltaic
Solar Energy Conference and Exhibition . June 6-11, 2005, Barcelona, Spain.
Melchior, T. (2009) H 2 Produciton by the two-step water-splitting thermochemical cycle based on
Zn/ZnO redox reactions. PhD thesis . ETH ZURICH (Swiss Federal Institute of Technology
Zurich), Switzerland.
Melis, T. (2004) Maximizing Photosynthetic Efficiencies and Hydrogen Production in
Microalgal Cultures. UC Berkeley, May 24, 2004. http://www.hydrogen.energy.gov/pdfs/
review04/hpd_9_melis.pdf. Accessed on March 20, 2011.
Moens, L., Blake, D. M., Rudnicki, D. L. and Hale, M.J. (2003) Advanced thermal storage fluids
for solar parabolic trough systems. Journal of Solar Energy Engineering , 125, 112-116.
Moens, L. and Blake, D. M. (2004) Advanced heat transfer and thermal storage fluids. 2004
DOE Solar Energy Technologies Program Review Meeting. October 25-28, 2004. Denver,
Colorado.
Mohapatra, S. K., Misra, M., Mahajan, V. K. and Raja, K.S. (2007) Design of a highly
efficient photoelectrolytic cell for hydrogen generation by water splitting: application of TiO 2 -
x C x nanotubes as a photoanode and Pt/TiO 2 nanotubes as a cathode. Journal of Physical
Chemistry. C , 111, 8677-8685.
Monnerie, N., Schmitz, M., Roeb, M., Quantius, D., Graf, D., Sattler, C. and De Lorenzo, D.
(2011) Potential of hybridisation of the thermochemical hybrid-sulphur cycle for the produc-
tion of hydrogen by using nuclear and solar energy in the same plant. International Journal
of Nuclear Hydrogen Production and Applications , 2, 178-201.
Moore, R. and Parma, E. (2007) A laboratory-scale sulfuric acid decomposition apparatus
for use in hydrogen production cycles. American nuclear society annual meeting. Boston,
Massachusetts . June 24-28, 2007.
Moore, R., Vernon, M., Ho, C. K., Siegel, N.P. and Kolb, G.J. (2010) Design considerations for
concentrating solar power tower systems employing molten salt. Sandia Report SAND2010-
6978. Available to the public from U.S. Department of Commerce National Technical
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