345
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 efcient 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 certicate 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 Hydrorening 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.

Get Petroleum Radiation Processing now with the O’Reilly learning platform.

O’Reilly members experience books, live events, courses curated by job role, and more from O’Reilly and nearly 200 top publishers.