Geoscience Reference
In-Depth Information
[400] N.V. Kosova, A.Kh. Khabibullin, V.V. Boldyrev, Hydrothermal reactions under
mechanochemical treating, Solid State Ionics 53 (1997) 101 103.
[401] W.L. Suchanek, P. Shuk, K. Byrappa, R.E. Riman, K.S. Ten Huisen, V.F. Janas,
Mechanochemical hydrothermal synthesis of carbonated apatite powder at room
temperature, Biomaterials 23 (2002) 699 710.
[402] C.A. Mirkin, R.L. Letsinger, R.C. Mucic, J.J. Storhoff, A DNA-based method for
rationally assembling nanoparticles into macroscopic materials, Nature 382 (1996)
607 609.
[403] D. Baranov, L. Mannav, A.G. Kanaras, Chemically induced self-assembly of spherical
and anisotropic inorganic nanocrystals, J. Mater. Chem. 21 (2011) 16694 16703.
[404] S. Komarneni, Synthesis of nanorods and nanowires using biomolecules under con-
ventional and microwave hydrothermal conditions,
J. Mater. Sci. 43 (2008)
2377 2386.
[405] R.W. Shaw, T.R. Brill, A.A. Clifford, C.A. Eckert, E.U. Franck, Supercritical water:
a medium for chemistry, Chem. Eng. News 69 (1991) 26 30.
[406] M. Modell, Supercritical water oxidation, in: H.M. Freeman (Ed.), Standard
Handbook of Hazardous Waste Treatment and Disposal, McGraw-Hill, New York,
NY, 1989, pp. 8.153 8.168.
[407] A. Shanableh, E.F. Gloyna, Supercritical water oxidation waste waters and sludges,
Water Sci. Technol. 23 (1991) 389 393.
[408] W.A. Peters, Supercritical water technology: process systems research for new appli-
cations, in: Proceedings of the Second International Conference Solvothermal
Reactions, (N. Yamasaki, and K. Yamagisawa Eds.) Takamatsu, Japan, December
18 20, 1996, pp. 35 41.
[409] N. Yamasaki, K. Yanagisawa (Eds.), Proceedings of the Second International Conference
on Solvothermal Reactions, Takamatsu, Japan, Dec. 18 20, (1996), pp. 1 280.
[410] N. Yamasaki, K. Yanagisawa, M. Fujita, Hydrothermal decomposition of chloro-
fluorocarbons: CFC 11 and CFC 113, in: Proceedings of the First International
Conference on Solvothermal Reactions, Takamatsu, Japan, December 5
7, 1994,
141.
[411] P.E. Savage, Reaction models for supercritical water oxidation processes, in:
Proceedings of the Second International Conference on Solvothermal Reactions,
Takamatsu, Japan, December 18 20, 1996, pp. 2 4.
[412] M. Nakahara, T. Yamaguchi, H. Ohtaki, The structure of water and aqueous electrolyte
solutions under extreme conditions, Recent Res. Develop. Phys. Chem. 1 (1997) 17 49.
[413] H. Ohataki, T. Radnai, T. Yamaguchi, Structure of water under subcritical and super-
critical conditions studied by solution X-ray diffraction, Chem. Soc. Rev.
pp. 134
(1997)
41 51.
[414] M. Nakahara, N. Matubayasi, C. Wakai, NMR study of hydrogen bonds and water
structure in super- and subcritical conditions, in: Proceedings of the Second
International Conference on Solvothermal Reactions, Takamatsu, (N. Yamasaki, and
K. Yanagisawa Eds) Japan, December 18 20, 1996, pp. 9 12.
[415] T. Adschiri, R. Malaluan, K. Machida, O. Sato, K. Arai, Waste polymer conversion
to chemicals in supercritical water, in: Proceedings of the First International
Conference on Solvothermal Reactions, Takamatsu, Japan, December 5 7, 1994,
pp. 138 141.
[416] R.A. Laudise, Green materials: industrial ecology, in: S. Somiya, R.P.H. Chang, M.
Doyama, R. Roy (Eds), Materials Science and Engineering Serving Society, Elsevier,
The Netherlands, 1998, pp. 23 27.
Search WWH ::




Custom Search