Topchiev AV, Polak LS (1962) Radiolysis of hydrocarbons. Acad Sci USSR, Moscow
Google Scholar
Topchiev AV (1964) Radiolysis of hydrocarbons. El Publ Co., Amsterdam, London
Google Scholar
Brodskiy AM, Lavrovskiy KP, Zvonov NV, Titov VB (1961) Radiation-thermal conversion of oil fractions. Neftekhimiya (Oil Chemistry) 3:370–383
Google Scholar
Lavrovsky KP (1976) Catalytic, thermal, and radiation-chemical conversion in hydrocarbons. Nauka Publ., Moscow, pp 312–373, 255–263
Gabsatararova SA, Kabakchi AM (1969) Effect of gamma-irradiation dose rate on formation of unsaturated compounds during radiation-thermal cracking of n-heptane. Khimiya Vysokikh Energiy (High Energy Chem) 3:126–128
Google Scholar
Panchenkov GM, Putilov AV, Zhuravlev GI (1981) Study of basic regularities of n-decane radiation-thermal cracking. Khimiya Vysokikh Energiy (High Energy Chem) 15:426–430
CAS
Google Scholar
Zaikina RF, Zaikin YA, Mirkin G, Nadirov NK (2002) Prospects of radiation technology application in oil industry. Radiat Phys Chem 63:621–624
Article
Google Scholar
Mirkin G, Zaikin YA, Zaikina RF (2003) Radiation methods for upgrading and refining of feedstock for oil chemistry. Radiat Phys Chem 67:311–314
CAS
Article
Google Scholar
Nadirov NK, Zaikina RF, Zaikin YuA (1994) Progress in high viscosity oil and natural bitumen refining by ionizing irradiation. Oil Bitumen Kazan 4:1638–1642
Google Scholar
Nadirov NK, Zaikina RF, Zaikin YA (1995) New high-efficient technologies for heavy oil and oil residue refining. Energy Fuel Resour Kazakhstan 1:65–69
Google Scholar
Zaikin YA, Zaykina RF, Mamonova TB, Nadirov NK (2001) Radiation-thermal processing of high-viscous oil from Karazhanbas field. Radiat Phys Chem 60:211–221
Article
Google Scholar
Zaikina RF, Zaikin YA, Mamonova TB (2002) Radiation methods for demercaptanization and desulfurization of oil products. Radiat Phys Chem 63:617–619
Article
Google Scholar
Zaikina RF, Zaikin YA (2003) Radiation technologies for production and regeneration of motor fuels and lubricants. Radiat Phys Chem 65:169–172
Article
Google Scholar
Zaikin YA, Zaikina RF, Silverman J (2004) Radiation-thermal conversion of paraffinic oil. Radiat Phys Chem 69:229–238
Article
Google Scholar
Zaikina RF, Zaikin YA, Yagudin ShG, Fahruddinov IM (2004) Specific approaches to radiation processing of high-sulfuric oil. Radiat Phys Chem 71:467–470
Article
Google Scholar
Zaikin YA, Zaikina RF (2004) Bitumen radiation processing. Radiat Phys Chem 71:471–474
Article
Google Scholar
Zaikin YA, Zaikina RF (2007) Effect of radiation-induced isomerization on gasoline upgrading. In: Proceedings of the 8th topical meeting on nuclear applications and utilization of accelerators AccApp’07, Pocatello, Idaho, July 29-August 2, 2007. American Nuclear Society, pp 993–998
Zaikin YA (2013) On the nature of radiation-excited unstable states of hydrocarbon molecules in heavy oil and bitumen. Radiat Phys Chem 84:6–9
CAS
Article
Google Scholar
Zaikin Y, Zaikina R (2013) Petroleum radiation processing. Taylor & Francis, CRC, New York, Boca Raton
Book
Google Scholar
Zaikin YA, Zaikina RF, Nadirov NK (2014) The phenomenon of the radiation-enhanced isomerization of hydrocarbon systems. In: International academy of the authors of scientific discoveries and inventions. Certificate of discovery A-589 of Nov 4, 2013; Diploma #463. The year of priority: 2001
Zaikin Y, Zaikina R (2008) PetroBeam process for heavy oil upgrading. World Heavy Oil Conference, Edmonton 10–12 March, 2008, WHOC, paper 2008-461
Zaikin YA (2008) Low-temperature radiation-induced cracking of liquid hydrocarbons. Radiat Phys Chem 77:1069–1073
CAS
Article
Google Scholar
ZaikinY A (2013) Radiation-induced cracking of hydrocarbons. In: Kharissov BI, Kharissova OV, Mendez UO (eds) Radiation synthesis of materials and compounds. Taylor & Francis, CRC, New York, Boca Raton, pp 355–379
Google Scholar
Zaikin YA, Zaikina RF (2008) New trends in the radiation processing of petroleum. In: Camillery AN (ed) Radiation physics research progress. Nova Science, New York, pp 17–103
Google Scholar
Zaikin YA, Zaikina RF (2012) Self-sustaining cold cracking of hydrocarbons. US patents 8,192, 591 and 8,911,617; Eurasian patent 016698, Patent of Canada 2633885, Patent of China 200680051814.1, Patent of Mexico 309717, Patent of India 259292
Bugaenko LP, Kuzmin MG, Polak LS (1988) Chemistry of high energy. Chimiya, Moscow
Google Scholar
Zaikin YA (2013) Polymerization as a limiting factor for light product yields in radiation cracking of heavy oil and bitumen. Radiat Phys Chem 84:2–5
CAS
Article
Google Scholar
Zaikin YA, Zaikina RF, Mirkin G (2003) On energetics of hydrocarbon chemical reactions by ionizing irradiation. Radiat Phys Chem 67(3–4):305–309
Article
Google Scholar
Nadirov NK, Zaikin YA, Zaikina RF, Makulbekov EA, Petukhov VK, Panin YA (1994) Method for processing heavy oil and oil residua. Patent of Kazakhstan 4676
Zaikin YA et al (2006) Experimental facility for processing hydrocarbon components of natural bitumen. Almaty, Technical report on ISTC project K-930
Akpabio EJ (1992) Cand. Diss. Thesis. Baku
Musaev GF, Mamonova TB, Malibov MS, Musaeva ZG (1994) Study of Kazakhstani bitumen rocks by the thermocatalytic method. Energy Fuel Resour Kazakhstan 4:51–56
Google Scholar
Zaikin YA, Zaikina RF, Nadirov NK, Sarsembinov ShSh (1999) Method and apparatus for reprocessing of used and residual mixtures of oil products. Patent of Kazakhstan 8142
Zaikin YA (2005) New technological approaches to cleaning, upgrading and desulfurization of oil wastes and low-grade oil products. In: Proceedings of the 4th international conference “Oils and Environment”. Gdansk University of Technology, pp 275–282
Ivanov VS (1988) Radiation chemistry of polymers. Khimiya, Leningrad, pp 299–300
Google Scholar
Chmielewski AG (2011) Electron accelerators for environmental protection. Rev Accel Sci Technol 4:149–161
Article
Google Scholar
Pawelec A et al (2016) Fuel Process Technol 145:123–129
CAS
Article
Google Scholar
Zaikina RF, Zaikin YA, Mamonova TB, Nadirov NK (1999) A method for hydrocarbon feedstock cleaning with the removal of sulfur compounds. Patent of Kazakhstan 11995
Likhterova NM, Lunin VV, Kukulin VI, Knipovich OM, Torkhovskiy VN (1998) A method for petroleum feedstock processing. Patent of Russia RU 212040
Lunin VV, Frantsuzov VK, Likhterova NM (2012) Desulfurization and demetallization of heavy oil fractions by ozonolysis and radiolysis. Neftekhimiya (Petrol Chem) 42(36):195–202
Google Scholar
Ayukawa Y, Ono M (2004) High-energy beam irradiating desulfurization device. US Patent 6,284,746B2
Basfar AA, Khaled A-AM (2012) Method of removing sulfur from crude oil by ionizing irradiation. Pub/No. US 2012/0138449 A1
Qu Z, Yan N, Jia J, Wu D (2006) Removal of thiophene-type sulfide by gamma radiation assisted with hydrogen peroxide. Energy Fuels 20:142–147
CAS
Article
Google Scholar
Tian Y, Yan N, Li D, Yao S, Wang W (2003) Removal of dibenzothiophene from simulated petroleum by integrated γ-irradiation and Zr/alumina catalyst. J Chem Ind Eng (China) 54:1279–1283
CAS
Google Scholar
Zhao YF, Yan NG, Wu D, Jia JP, Qu Z (2004) Investigation on removal of thiophene-type sulfide by gamma rays radiation assisted with hydrogen peroxide. J Shanghai Jiatong Univ 38:1719–1723
CAS
Google Scholar
Chandrasekhar S (1947) Stochastic problems in physics and astronomy. Inostrannaya Literatura, Moscow
Google Scholar
Chmielewski AG, Haji-Saeid M (2004) Radiation technologies: past, present and future. Radiat Phys Chem 71:17–21
CAS
Article
Google Scholar
Haji-Saeid M et al (2007) Nuclear instruments and methods in physics research. Sect B Beam Interact Mater Atoms 265:51–57
CAS
Google Scholar
Zaikin YA, Zaikina RF (2004) Criteria of synergetic effects in radiation-induced conversion of complex hydrocarbon mixtures. Oil Gas (Kazakhstan) 22(2):64–73
Google Scholar
Allara DL (1980) A compilation of kinetic parameters for the thermal degradation of n-alkane molecules. J Phys Chem Ref Data 9(3):523–525
CAS
Article
Google Scholar
Talrose VL (1974) To the theory of radiation-chemical initiation of chain reactions. Khimiya Vysokikh Energiy (High-Energy Chem) 8:519–527
Google Scholar