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Issue DateTitleAuthor(s)
2017Assessment Of Environmental Impact From Renewable And Non-renewable Energy SourcesRagazzi, M.; Ionescu, G.; Cioranu, S. I.
2012Burning of volatiles in fluidized bed combustion of solid fuelsMunts, V. A.; Pavlyuk, E. Yu.; Kryukov, M. V.; Savkin, A. V.
2021Computational and analytical evaluation of the efficiency of using hydrogen as a fuel in an internal combustion enginePlotnikov, L. V.; Ulman, N. V.
2016Cu–CeO2 nanocomposites: mechanochemical synthesis, physico-chemical properties, CO-PROX activityBorchers, C.; Martin, M. L.; Vorobjeva, G. A.; Morozova, O. S.; Firsova, A. A.; Leonov, A. V.; Kurmaev, E. Z.; Kukharenko, A. I.; Zhidkov, I. S.; Cholakh, S. O.
2021Design features of thermal furnace with a drum mechanism for blanks transportationCheremiskina, N. A.; Shchukina, N. V.; Loshkarev, N. B.; Lavrov, V. V.
2017The development of a high temperature air heating unit based on the external combustion for integrated gasification combined cycleValtsev, N. V.; Mikula, V. A.; Ryzhkov, A. F.
2019Development of an Information Modeling System of Coal-Dust Fuel Injection into Tuyeres of a Blast FurnaceShvydkii, V. S.; Kudelin, S. P.; Gurin, I. A.; Noskov, V. Y.
2019Development of information modeling system of coal-dust fuel injection into tuyeres of blast furnaceShvydkii, V. S.; Kudelin, S. P.; Gurin, I. A.; Noskov, V. Yu.
2014Environmental damage from the combustion of fuels: Challenges and methods of economic assessmentMagaril, E.; Abrzhina, L.; Belyaeva, M.
2019Experimental investigation of the high-temperature air heating effect on the model artificial gas combustion processFilippov, P. S.; Khudyakov, P. Y.; Ryzhkov, A. F.
2022Experimental Study of an Internal Combustion Engine Fueled by a Low-Calorific Value Producer GasNikitina, G. I.; Kozlov, A. N.; Penzik, M. V.
2014Formation and reduction of nitrogen oxides in the combustion of fuels in a circulating fluidized bedMunts, V.; Munts, Y.; Proshin, A.; Khudyakova, V.
2013Improving the thermal characteristics of furnaces and the operating conditions of the lining by improving direct-flame-impingement methods for intensifying the heating of metalLisienko, V. G.; Shleimovich, E. M.
2016The Influence of Cross-profiling of Inlet and Exhaust Pipes on the Gas Exchange Processes in Piston EnginesPlotnikov, L. V.; Zhilkin, B. P.; Brodov, Y. M.
2017The Influence of Piston Internal Combustion Engines Intake and Exhaust Systems Configuration on Local Heat TransferPlotnikov, L. V.; Zhilkin, B. P.; Brodov, Yu. M.
2023Investigation into the operation of an autothermal two-section subbituminous coal fluidized bed gasifierAbaimov, N.; Ryzhkov, A.; Dubinin, A.; Ding, L.; Tuponogov, V.; Alekseenko, S.
2019Investigation of hydrodynamic features in two-stage steam-air-blown entrained-flow gasifierAbaimov, N. A.; Butakov, E. B.; Burdukov, A. P.; Ryzhkov, A. F.
2019A method of studying thermochemical conversion of single biomass particles in an intense air flowSvishchev, D. A.; Kozlova, M. A.; Ralnikov, P. A.
2013Modeling the burnout of solid polydisperse fuel under the conditions of external heat transferSkorik, I. A.; Goldobin, Yu. M.; Tolmachev, E. M.; Gal'perin, L. G.
2021Modernization of the Mechanical Fuel System of a Diesel Locomotive Engine Through Physical and Numerical ModelingPlotnikov, L.; Grigoriev, N.