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References
Adigamov, B.Y., Lunin, V.V., Miroshnichenco, I.I., Panteleev, D.M., Solovetskii, Y.I., Taletsky,
Y.V., and Fesenko, O.G. 1990. Radiation-thermal treatment of hydrodesulphurization
carbides Co-Mo catalyst. J. Kinet. Catal., 31: 666.
Ajiev, A.Y., Adigamov, B.Y., Lunin, V.V., Miroshnichenko, I.I., Panteleev, D.M., Riabchenko,
P.V., Sadovnichaya, M.V., Solovetsii, Y.I., and Taletsky, Y.V. 1991. Phase transforma-
tions of Fe-containing catalyst structures during the process of direct hydrogen sulphide
oxidation into sulphur as a result of radiation-thermal treatment. J. Kinet. Catal., 32: 434.
Al, M., Da Silva, P., Barrufet, M., and Moreira, R. 2012a. Utilization of charged particles
as an efcient way to improve rheological properties of heavy asphaltic petroleum u-
ids. SPE Latin America and the Caribbean Petroleum Engineering Conference, Mexico
City, Mexico, Vol. 2, pp. 1379–1387.
Al, M., Da Silva, P.F., Barrufet, M.A., and Moreira, R.G. 2012b. Electron induced chain
reactions of heavy petroleum uids—Effective parameters. Proc. SPE Heavy Oil
Conference, Calgary, Alberta, Canada, Vol. 2, pp. 1230–1239.
Allara, D.L. 1980. A compilation of kinetic parameters for the thermal degradation of n-alkane
molecules. J. Phys. Chem. Ref. Data, 9(3): 523–559.
Al-Sheikhly, M. and Silverman, J. 2008. Radiation processing of heavy oils. Patent Application
No. PCT/US2007/088578.
Arakawa, K., Hayakawa, N., Yoshida, K., Tamura, N., Nakanishi, H., Yagi, T., and Kuroiwa, S.
1987. Lubricating oil blend resistant to ionizing radiation. US Patent 4,664,829.
Ayukawa, Y. and Ono, M. 2004. High-energy beam irradiating desulfurization device.
US Patent 6,284,746B2.
Bakirov, M.Y., Yakubov, K.M., Mustafaev, I.I., and Gajiev, K.M. 1984. A method for hydrogen
production. Author certicate SU 1181242.
Barker, R. 1968. Dose-rate effects in the radiolysis of liquid n-hexane. Trans. Faraday Soc.,
64: 430–439.
Basfar, A.A. and Khaled, A.-A.M. 2012. Method of removing sulfur from crude oil by ionizing
irradiation. Publication No. US 2012/0138449 A1.
Batzle, M. and Zhijing, W. 1992. Seismic properties of pore uids. Geophysics 57(11): 1396.
Bazyleva, A.B., Hasan, A., Michal, F.M., Becerra, M., and Shaw, J.M. 2010. Bitumen and
heavy oil rheological properties: Reconciliation with viscosity measurements. J. Chem.
Eng. Data, 55: 1389–1397.
Berejka, A.J. 2003. Reactor design concepts for radiation processing. Radiat. Phys. Chem.,
71: 311–316.
Berg, G.A. and Habibullin, S.G. 1986. Catalytic Hydrorening of Oil Residua. Leningrad,
Russia: Chimiya Publications, 192pp.
Bludenko, F.V., Ponomarev, A.V., Chulkov, A.V., Yakushev, I.A., and Yarullin, R.S. 2007.
Electron-beam decomposition of bitumen-gas mixtures at high dose rates. Mendeleev
Commun., 17: 227–229.
Boyd, A.W. and Tomlinson, M. 1968. Radiolysis of ortho- and meta-terphenyl. Atomic Energy
of Canada, Report AECL-2730, 20pp.
Brodskiy, A.M. and Lavrovskiy, K.P. 1963. On the temperature limit of radiation effect on the
rate of chemical conversion. Kinet. Catal., 4: 652–653.
Brodskiy, A.M., Lavrovskiy, K.P., and Titov, V.B. 1963. On temperature dependence of the
rate of hydrocarbon radiation conversion. Kinetika I Kataliz (Kinet. Catal.), 4: 337–342.
Brodskiy, A.M., Lavrovskiy, K.P., Zvonov, N.V., and Titov, V.B. 1961. Radiation-thermal con-
version of oil fractions. Neftekhimiya (Oil Chem.), 3(3): 370–383.
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