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Ibraeva K.
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2
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Dubinin Y.V.
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Catalytic Combustion of Sulfur-Containing Liquid Fuels in the Fluidized Bed: Experiment and Modeling
Journal of Industrial and Engineering Chemistry. 2021.
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3
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Tabakaev R.
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Kan V.
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Rudmin M.
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The Effect of Co-combustion of Waste from Flour Milling and Highly Mineralized Peat on Sintering of the Ash Residue
Energy. 2020.
V.196. 117157
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4
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Tabakaev R.
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Yazykov N.
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The Study of Highly Mineralized Peat Sedimentation Products in Terms of Their Use as an Energy Source
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V.271. 117593
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5
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Fedorov A.V.
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CuFeAl Nanocomposite Catalysts for Coal Combustion in Fluidized Bed
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6
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Molybdenum Recovery from Spent Mo-Based Dispersed Catalyst Accumulated in Heavy Oil Steam Cracking Coke
Fuel Processing Technology. 2020.
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7
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Tabakaev R.
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Evaluation of Autothermal Peat Pyrolysis Realization for Fuel Processing Technologies
Waste and Biomass Valorization. 2019.
V.10. N4. P.1021–1027. DOI: 10.1007/s12649-017-0115-7
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8
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Tabakaev R.
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Thermal Enrichment of Different Types of Biomass by Low-Temperature Pyrolysis
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V.245. P.29-38. DOI: 10.1016/j.fuel.2019.02.049
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9
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Tabakaev R.
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Thermal Effects Investigation During Biomass Slow Pyrolysis in a Fixed Bed Reactor
Biomass and Bioenergy. 2019.
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10
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Dubinin Y.V.
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Burning of Sulfur-Containing Liquid Fuels in Fluidized Catalyst Bed
Russian Journal of Applied Chemistry. 2019.
V.92. N5. P.647-654. DOI: 10.1134/S1070427219050100
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11
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Yazykov N.A.
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Catalytic Co-Combustion of Peat and Anthracite in a Fluidized Bed
Catalysis in Industry. 2019.
V.11. N4. P.342-348. DOI: 10.1134/S2070050419040111
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12
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Tabakaev R.B.
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13
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Yazykov N.A.
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Catalytic Effect of the Iron-Containing Microspheres of Fly Ash on the Oxidation of Diesel Fuel in Vibrofluidized and Fluidized Beds of an Inert Material
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V.10. N4. P.353-359. DOI: 10.1134/s2070050418040153
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14
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Yazykov N.A.
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Combustion of Shale Heavy Coal-Tar Products in a Boiling Layer of a Catalyst
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15
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Assessment of the Low Heat Values of Plant Biomass, Peat and Fossil Coal Based on Technical Analysis
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16
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Yazykov N.A.
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Features of Sulfur Oils Catalytic Combustion in Fluidized Bed
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17
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Dubinin Y.V.
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Burning Sulfur Crude Oil in a Fluidized Catalyst Bed
Catalysis in Industry. 2015.
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18
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Dubinin Y.V.
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SO2 Absorption by a Fixed Calcite Bed
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19
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Simonov A.D.
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Catalytic Heat-Generating Units for Industrial Heating
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20
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Tikhov S.F.
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21
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Yazykov N.A.
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Pyrolysis of Wood in Vibro-Fluidized Beds of Catalysts and Inert Materials
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22
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Efficient Combustion of Methane in a Fluidized Bed of Catalyst
Chemistry for Sustainable Development. 2013.
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Thermal Decomposition of Biomass and Glycerol in Vibro-Liquefied Bed in the Presence of the Catalysts of Deep Oxidation
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Simonov A.D.
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Catalytic Combustion of Wastewater Sediments from Community Facilities
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Eletskii P.M.
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Texture and Surface Properties of Carbon–Silica Nanocomposite Materials Prepared by the Carbonization of High-Ash Vegetable Raw Materials in a Fluidized Catalyst Bed
Kinetics and Catalysis. 2008.
V.49. N2. P.305-312. DOI: 10.1134/S0023158408020201
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26
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Eletsky P.M.
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Kaichev V.V.
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Erratum: "Texture and surface properties of carbon-silica nanocomposite materials prepared by the carbonization of high-ash vegetable raw materials in a fluidized catalyst bed" (Kinetics and Catalysis (2008) 49, (305))
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V.49. N3. P.460-460. DOI: 10.1134/S0023158408030245
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27
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Simonov A.D.
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Combustion and Processing of Rice Husk in the Vibrofluidized Bed of Catalyst or Inert Material
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Fuel Combustion in the Fluidized Bed of an Inert Material Equipped with an Unmovable Catalytic Small-Volume Package
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Combustion and Processing of Rice Husk in the Vibrofluidized Bed of Catalyst or Inert Material
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Industrial Experience of Heat Supply by Catalytic Installations
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Investigation of the Mechanism of Water Transfer in Catalysts and Adsorbents
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Catalytic Heating Plants
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Mechanism of Mass Transfer in the Adsorption Contact Drying of Materials
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Application of Nitroxyl Radicals to Study Mass Transfer Processes in Porous Materials
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