Geoscience Reference
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[439] Q. Feng, E.H. Sun, K. Yanagisawa, N. Yamasaki, Synthesis of birnessite-type sodium
manganese oxide and the behavior under hydrothermal conditions, in: S. Somiya, R.
P.H. Chang, M. Doyama, R. Roy (Eds), Materials Science and Engineering Serving
Society, Elsevier, The Netherlands, 1998, pp. 125 128.
[440] G. Demazeau, The solvothermal synthesis: a way to a new chemistry, in: Proceedings
of the International Workshop on Soft and Solution Processing for Advanced Inorganic
Materials, Tokyo Institute of Technology, Japan, February 22
12.
[441] G. Demazeau, Solvothermal reaction: an original route for the synthesis of novel
materials, J. Mater. Sci. 43 (2008) 2024 2029.
[442] D.M. Roy, Concrete, the gigaphase ceramic: its key role in environmentally friendly
technology, in: S. Somiya, R.P.H. Chang, M. Doyama, R. Roy (Eds), Materials
Science and Engineering Serving Society, Elsevier, The Netherlands, 1988,
pp. 81 88.
[443] N. Yamasaki, Possibility of materials recycling using hydrothermal process, in: S.
Somiya, R.P.H. Chang, M. Doyama, R. Roy (Eds), Materials Science and
Engineering Serving Society, Elsevier, The Netherlands, 1988, pp. 107 112.
[444] T. Yoshioka, T. Sato, A. Okuwaki, Hydrolysis of water PET by sulfuric acid at
150 C for a chemical recycling, J. Appl. Polymer Sci. 52 (1994) 1353 1355.
[445] N. Yamasaki, Recovery process of human waste to energy resource using hydrother-
mal technology, in: Proceedings of the World Conference on the Role of Advanced
Materials in Sustainable Development, Seoul, Korea, September 1 6, 1996, pp.
199 205.
[446] K. Kugimiya, Ceramics for the next millennium, in: S. Somiya, R.P.H. Chang, M.
Doyama, R. Roy (Eds), Materials Science and Engineering Serving Society, Elsevier,
The Netherlands, 1988, pp. 28 33.
27, 1996, pp. 4
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