1
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Михненко М.Д.
, Черепанова С.В.
, Шмаков А.Н.
, Алексеева М.В.
, Кукушкин Р.Г.
, Яковлев В.А.
, Пахарукова В.П.
, Булавченко О.А.
Исследование особенностей структуры высокодисперсного NiO-SiO2 катализатора рентгенографическим методом анализа функции распределения атомных пар
Поверхность. Рентгеновские, синхротронные и нейтронные исследования. 2024.
№6. С.23-30. DOI: 10.31857/S1028096024060039
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2
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Mikhnenko M.D.
, Cherepanova S.V.
, Shmakov A.N.
, Alekseeva M.V.
, Kukushkin R.G.
, Yakovlev V.A.
, Pakharukova V.P.
, Bulavchenko O.A.
Investigation of the Structure of Highly Dispersed NiO–SiO2 Catalyst Features Using X-Ray Analysis of the Atomic Pair Distribution Function
Journal of Surface Investigation: X-Ray, Synchrotron and Neutron Techniques. 2024.
V.18. N3. P.641-647. DOI: 10.1134/s1027451024700241
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CAPlus
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3
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Wang Q.
, Le K.
, Lin Y.
, Yin W.
, Lin Y.
, Alekseeva M.V.
, Yakovlev V.A.
, Koskin A.P.
, Yang C.
, Qiu T.
Investigation on Catalytic Distillation Dehydrogenation of Perhydro-Benzyltoluene: Reaction Kinetics, Modeling and Process Analysis
Chemical Engineering Journal. 2024.
V.482. 148591
:1-14. DOI: 10.1016/j.cej.2024.148591
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CAPlusCA
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4
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Sukhorukov D.A.
, Kukushkin R.G.
, Alekseeva (Bykova) M.V.
, Bulavchenko O.A.
, Zaikina O.O.
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Upgrading of Sewage Sludge-Derived Pyrolysis Oil via Hydrotreatment over NiMo-Based Catalysts
Fuel. 2024.
V.359. 130383
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5
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Koskin A.P.
, Stepanenko S.A.
, Alekseeva (Bykova) M.V.
, Bulavchenko O.A.
, Gerasimov E.Y.
, Lysikov A.I.
, Yeletsky P.M.
, Kaichev V.V.
, Yakovlev V.A.
The Origin of Extraordinary Selectivity in Dehydrogenation of Methylcyclohexane over Ni-Sn-Based Catalysts
Chemical Engineering Journal. 2023.
V.476. 146629
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6
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Smirnov A.
, Shilov I.N.
, Alekseeva M.V.
, Bulavchenko O.A.
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The Effect of Support on Catalytic Performance of Ni-Doped Mo Carbide Catalysts in 2-Methylfuran Production
Catalysts. 2023.
V.13. N5. 870
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7
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Miroshnikova A.V.
, Baryshnikov S.V.
, Malyar Y.N.
, Li X.
, Alekseeva M.V.
, Kuznetsov B.N.
, Taran O.P.
Depolymerization of Pine Wood Organosolv Lignin in Ethanol Medium over NiCu/SiO2 and NiCuMo/SiO2 Catalysts: Impact of Temperature and Catalyst Composition
Polymers. 2023.
V.15. N24. 4722
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PMID
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8
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Mikhnenko M.D.
, Cherepanova S.V.
, Gerasimov E.Y.
, Pochtar A.A.
, Alekseeva (Bykova) M.V.
, Kukushkin R.G.
, Yakovlev V.A.
, Bulavchenko O.A.
Defect Structure of Nanocrystalline NiO Oxide Stabilized by SiO2
Inorganics. 2023.
V.11. N3. 97
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9
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Shinkevich K.S.
, Kukushkin R.G.
, Bulavchenko O.A.
, Zaikina O.O.
, Alekseeva M.V.
, Ruvinskiy P.S.
, Yakovlev V.A.
Influence of the Support on Activity and Stability of Ni and Ni-Mo Catalysts in the Hydroprocessing of Fatty Acids into Motor Fuels Components
Applied Catalysis A: General. 2022.
V.644. 118801
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10
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Alekseeva (Bykova) M.V.
, Gulyaeva Y.K.
, Bulavchenko O.A.
, Saraev A.A.
, Kremneva A.M.
, Stepanenko S.A.
, Koskin A.P.
, Kaichev V.V.
, Yakovlev V.A.
Promoting Effect of Zn in High-Loading Zn/Ni-SiO2 Catalysts for Selective Hydrogen Evolution from Methylcyclohexane
Dalton Transactions. 2022.
V.51. N15. P.6068-6085. DOI: 10.1039/d2dt00332e
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11
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Шашков М.В.
, Сотникова Ю.С.
, Долгушев П.А.
, Алексеева М.В.
Разработка комплексного анализа продуктов пиролиза лигноцеллюлозного сырья и иловых осадков хроматографическими методами
Журнал Сибирского федерального университета. Серия: Химия (Journal of Siberian Federal University. Chemistry). 2021.
Т.14. №4. С.489-501. DOI: 10.17516/1998-2836-0240
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12
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Smirnov A.A.
, Alekseeva M.V.
, Grachev A.N.
, Zaikina O.O.
, Selishcheva S.A.
, Bulavchenko O.A.
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Hydrotreatment of Fast Pyrolysis Liquid over Cr and P-Modified Catalysts with High Ni Content
Catalysis Today. 2021.
V.379. P.285-295. DOI: 10.1016/j.cattod.2021.05.023
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13
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Gulyaeva Y.
, Alekseeva (Bykova) M.
, Bulavchenko O.
, Kremneva A.
, Saraev A.
, Gerasimov E.
, Selishcheva S.
, Kaichev V.
, Yakovlev V.
Ni–Cu High-Loaded Sol–Gel Catalysts for Dehydrogenation of Liquid Organic Hydrides: Insights into Structural Features and Relationship with Catalytic Activity
Nanomaterials. 2021.
V.11. N8. 2017
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14
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Gulyaeva Y.K.
, Alekseeva (Bykova) M.V.
, Ermakov D.Y.
, Bulavchenko O.A.
, Zaikina O.O.
, Yakovlev V.A.
High-Loaded Nickel Based Sol–Gel Catalysts for Methylcyclohexane Dehydrogenation
Catalysts. 2020.
V.10. N10. 1198
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15
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Alekseeva (Bykova) M.V.
, Bulavchenko O.A.
, Saraev A.A.
, Kremneva A.M.
, Shashkov M.V.
, Zaikina O.O.
, Gulyaeva Y.K.
, Grachev A.N.
, Kikhtyanin O.
, Kubička D.
, Yakovlev V.A.
Effect of Temperature on the Hydrotreatment of Sewage Sludge-Derived Pyrolysis Oil and Behavior of Ni-Based Catalyst
Catalysts. 2020.
V.10. N11. 1273
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16
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Yin W.
, Alekseeva (Bykova) M.V.
, Venderbosch R.H.
, Yakovlev V.A.
, Heeres H.J.
Catalytic Hydrotreatment of the Pyrolytic Sugar and Pyrolytic Lignin Fractions of Fast Pyrolysis Liquids Using Nickel Based Catalysts
Energies. 2020.
V.13. N1. 285
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17
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Yeletsky P.M.
, Kukushkin R.G.
, Alekseeva M.V.
, Smirnov A.A.
Application of Heterogeneous Catalysts for the Conversion of Biomass-derived Feedstocks into Fuel Components and Eco-additives
Глава монографии
Heterogeneous Catalysis for Energy Applications.
– Royal Society of Chemistry.,
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– C.150-179. – ISBN 9781788017183. DOI: 10.1039/9781788019576-00150
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18
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Smirnov A.A.
, Alekseeva M.V.
, Bulavchenko O.A.
, Yakovlev V.A.
Studying the Effect of the Process Temperature on the Degree of Bio-Oil Hydrotreatment at Low Hydrogen Contents over NiCu–SiO2 Catalyst with a High Metal Loading
Catalysis in Industry. 2019.
V.11. N1. P.65-73. DOI: 10.1134/s2070050419010094
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19
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Alekseeva (Bykova) M.V.
, Otyuskaya D.S.
, Rekhtina M.A.
, Bulavchenko O.A.
, Stonkus O.А.
, Kaichev V.V.
, Zavarukhin S.G.
, Thybaut J.W.
, Alexiadis V.
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, Yakovlev V.А.
NiCuMo-SiO2 Catalyst for Pyrolysis Oil Upgrading: Model Acidic Treatment Study
Applied Catalysis A: General. 2019.
V.573. P.1-12. DOI: 10.1016/j.apcata.2019.01.003
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20
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Yin W.
, Venderbosch R.H.
, Alekseeva M.V.
, Figueirêdo M.B.
, Heeres H.
, Khromova S.A.
, Yakovlev V.A.
, Cannilla C.
, Bonura G.
, Frusteri F.
, Heeres H.J.
Hydrotreatment of the Carbohydrate-Rich Fraction of Pyrolysis Liquids Using Bimetallic Ni Based Catalyst: Catalyst Activity and Product Property Relations
Fuel Processing Technology. 2018.
V.169. P.258-268. DOI: 10.1016/j.fuproc.2017.10.006
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