1
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Lipin P.V.
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Joint cracking of vacuum gasoil with vegetable oils on zeolite-containing catalysts of various compositions
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V.62. N8. P.886-895. DOI: 10.1134/S0965544122070234
WOS
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Doronin V.P.
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Sorokina T.P.
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Lipin P.V.
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Dmitriev K.I.
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Features of petrochemical cracking catalysts produced by aluminosilicate technology
Catalysis Today. 2021.
V.378. P.75-82. DOI: 10.1016/j.cattod.2021.02.017
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Yurtaeva A.S.
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Potapenko O.V.
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Gulyaeva T.I.
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Effect of Modification Conditions on the Physicochemical Characteristics of Y Zeolite as a Component of a Petrochemical Cracking Catalyst
Petroleum Chemistry. 2021.
V.61. N3. P.325-331. DOI: 10.1134/S0965544121030038
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Nadeina K.A.
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Potapenko O.V.
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Kazakov M.O.
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Doronin V.P.
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Saiko A.V.
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Sorokina T.P.
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Kleimenov A.V.
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Influence of hydrotreatment depth on product composition of fluid catalytic cracking process for light olefins production
Catalysis Today. 2021.
V.378. P.2-9. DOI: 10.1016/j.cattod.2021.04.014
WOS
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5
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Lipin P.V.
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Effect of mixed oxide cracking catalyst on conversion of the mixture of vacuum gas oil and vegetable oil
Petroleum Chemistry. 2021.
V.61. N1. P.60-66. DOI: 10.1134/S0965544121010060
WOS
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Plekhova K.S.
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Sorokina T.P.
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Coconversion of n-Dodecane and 2-Methylthiophene in the Presence of Dual-Zeolite Cracking Catalysts Containing Different Amounts of Rare-Earth Elements
Petroleum Chemistry. 2020.
V.60. N8. P.923-928. DOI: 10.1134/S0965544120080113
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7
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Gilyazutdinov D.B.
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Dmitriev K.I.
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Sorokina T.P.
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Doronin V.P.
Research of the preparation stage of the aluminum thermochemical activation product as a catalysts component and adsorbent
AIP Conference Proceedings. 2020.
V.2301. 030004
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Scopus
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8
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Lipin P.V.
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Simultaneous conversion of vacuum gas oil and vegetable oil on cracking catalyst containing Me, Mg-Al mixed oxide
AIP Conference Proceedings. 2020.
V.2301. 030012
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Scopus
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9
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Plekhova K.S.
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Potapenko O.V.
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Sorokina T.P.
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Joint transformations of H-dodecane and 2-methylthiophene on bizeolite cracking catalysts containing phosphorus-modified zeolite ZSM-5
AIP Conference Proceedings. 2020.
V.2301. P.040008. DOI: 10.1063/5.0032913
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10
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Plekhova K.S.
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Research of the influence of ZSM-5 zeolite modification with zinc on the direction of transformations of oil raw materials
AIP Conference Proceedings. 2020.
V.2301. 040009
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Scopus
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11
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Lipin P.V.
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Gulyaeva T.I.
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Sorokina T.P.
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Effect of phosphorus modification of zeolites Y and ZSM-5
on the cracking of hydrotreated vacuum gas oil
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Petroleum Chemistry. 2019.
V.59. N8. P.894-902. DOI: 10.1134/S0965544119080115
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12
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Lipin P.V.
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Key features of cotransformation of vacuum gas oils and vegetable oils on dual-zeolite cracking catalysts
Petroleum Chemistry. 2019.
V.59. N7. P.657-665. DOI: 10.1134/S0965544119070090
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13
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Dmitriev K.I.
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Additives for reducing CO and NOx oxides in gases of the FCC catalyst regeneration
AIP Conference Proceedings. 2019.
V.2143. P.020018. DOI: 10.1063/1.5122917
WOS
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14
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Bobkova T.V.
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Nitrogen-resistant cracking catalysts for non-hydrofined vacuum gasoil with a high content of nitrogen compounds and features of their regeneration
AIP Conference Proceedings. 2019.
V.2143. 020013
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Plekhova K.S.
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Catalysts for joint C6 and C16 - Hydrocarbons catalytic cracking
AIP Conference Proceedings. 2019.
V.2143. P.020021. DOI: 10.1063/1.5122920
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Altynkovich E.O.
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Methods for Modifying a ZSM-5 Type Zeolite to Alter the Activity of the System of Hydrogen Transfer Reactions in the Cracking of Lower Aliphatic Alcohols
Petroleum Chemistry. 2019.
V.59. N7. P.666-674. DOI: 10.1134/S0965544119070028
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17
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Lipin P.V.
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Influence of cracking catalyst composition on transformations feedstock of petroleum and vegetable origin
AIP Conference Proceedings. 2019.
V.2143. 020019
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18
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Potapenko O.V.
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Lipin P.V.
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Intermolecular hydrogen transfer reactions during the hydrocarbons conversion in the presence of heteroatomic compounds on zeolite-containing catalysts
AIP Conference Proceedings. 2019.
V.2143. 020008
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Altynkovich E.O.
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Catalytic cracking of butanols and butane-butylene fractions
AIP Conference Proceedings. 2019.
V.2143. 020012
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Lipin P.V.
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Catalytic cracking of a mixture of vacuum gas oil and vegetable oil in the presence of mixed
Russian Journal of Applied Chemistry. 2019.
V.92. N10. P.1383-1391. DOI: 10.1134/S1070427219100082
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Doronin V.P.
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The Formation of Properties of Ultrastable Zeolite Y for Cracking and Hydrocracking Catalysts
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V.59. N3. P.311-318. DOI: 10.1134/S0965544119030046
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Transformations of n-undecane-indole model mixtures over the cracking catalysts resistant to nitrogen compounds
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V.172. P.172-178. DOI: 10.1016/j.fuproc.2017.12.020
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The influence of Y – type zeolite cationic composition on the model hydrocarbons transformations in the presence
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V.2007. 020003
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Doronin V.P.
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Modifying zeolite ZSM-5 to increase the yield of light olefins in cracking feedstocks of petroleum and vegetable origin
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V.10. N4. P.335-343. DOI: 10.1134/S2070050418040050
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V.90. N12. P.1900-1907. DOI: 10.1134/S1070427217120023
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Doronin V.P.
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Joint Transformations of Vegetable Oils with Vacuum Gas Oils under Catalytic Cracking Conditions
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V.25. N4. P.360-366. DOI: 10.15372/CSD20170404
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Altynkovich E.O.
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V.57. N3. P.215-221. DOI: 10.1134/s0965544117010030
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Performance of a zeolite-containing catalyst and catalysts based on noble metals in intermolecular hydrogen transfer between С6 hydrocarbons
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V.58. N3. P.271-278. DOI: 10.1134/S002315841703003X
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Features of catalysts for the hydrogenless refining of low-grade gasoline fractions
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V.9. N2. P.156-161. DOI: 10.1134/S2070050417020076
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Potapenko O.V.
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A Study of Intermolecular Hydrogen Transfer from Naphthenes to 1-Hexene over Zeolite Catalysts
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V.516. P.153-159. DOI: 10.1016/j.apcata.2016.02.028
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Features of combined conversion of naphthenic hydrocarbons and fatty acids under catalytic cracking conditions
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V.56. N8. P.745-752. DOI: 10.1134/S096554411608003X
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Thermal Evolution of Mg-Al and Ni-Al Layered Double Hydroxides: The Structure of the Dehydrated Phase
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V.A72. N6. P.651-659. DOI: 10.1107/S2053273316014868
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Effect of the Zeolite Modulus of Pt/MOR/Al2O3 Catalysts on the n-Heptane Isomerization Reaction
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V.8. N2. P.121-127. DOI: 10.1134/S2070050416020112
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Development and introduction of zeolite containing catalysts for cracking with controlled contents of rare earth elements
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V.7. N1. P.12-16. DOI: 10.1134/S2070050415010043
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Poisoning effect of nitrogen compounds on the transformation of model hydrocarbons and real feed under catalytic cracking conditions
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V.6. N3. P.218-222. DOI: 10.1134/S2070050414030040
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Hydrogen Transfer in Transformations of Olefin and Thiophene Compounds for the Refining of Gasoline Fractions
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V.128. P.251-256. DOI: 10.1016/j.fuproc.2014.07.034
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V.6. N4. P.307-311. DOI: 10.1134/S2070050414040072
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Conversion of vegetable oils under conditions of catalytic cracking
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V.6. N1. P.53-59. DOI: 10.1134/S207005041401005X
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Catalytic cracking of vegetable oils and vacuum gas oil
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V.106. P.757-765. DOI: 10.1016/j.fuel.2012.11.027
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Influence of [H]-donating activity of hydrocarbons on transformations of thiophene compounds under catalytic cracking conditions
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V.52. N1. P.55-59. DOI: 10.1134/S0965544112010082
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Effect of process conditions on the composition of products in the conventional and deep catalytic cracking of oil fractions
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Formation of Platinum Sites on Layered Double Hydroxides Type Basic Supports: I. Effect of the Nature of the Interlayer Anion on the Structure Characteristics of the Layered Aluminum–Magnesium Hydroxide and the Formation of an Oxide Phase
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