Gasification of Coal–Water Compositions by Laser Pulses of Various Intensity; Solid Fuel Chemistry; Vol. 53, No. 1
| Parent link: | Solid Fuel Chemistry Vol. 53, No. 1.— 2019.— [P. 48-53] |
|---|---|
| Korporace: | Национальный исследовательский Томский политехнический университет Исследовательская школа физики высокоэнергетических процессов, Национальный исследовательский Томский политехнический университет Инженерная школа энергетики Научно-образовательный центр И. Н. Бутакова (НОЦ И. Н. Бутакова) |
| Další autoři: | Zaitsev A. S. Aleksandr Sergeevich, Egorov R. I. Roman Igorevich, Tkachenko P. P. Pavel Petrovich, Belonogov M. V. Maxim Vladimirovich |
| Shrnutí: | Title screen The paper analyzes the processes occurring on the interaction of high-power nanosecond laser pulses with a coal-water mixture prepared from gas-coal waste. It was found that the rate of production of a mixture of CO and H2 sharply increased at a laser radiation intensity higher than 8 J/cm2. This was expressed in a sharp increase in the concentration of the combustible components of synthesis gas (CO, up to 0.57 vol %) and in a noticeable acceleration of the growth of the mass of a gas-aerosol fuel mixture upon the absorption of laser pulses (by 40%). At low pulse energy densities, the generation of a finely dispersed (particle size, 30-70 [mu]m) fuel aerosol was a predominant process. Gasification came into play above the effective ablation threshold when the weight ratio between synthesis gas and the sprayed aerosol reached 1 : 3. Thus, the action of laser pulses makes it possible to convert coal preparation wastes into a highly flammable gas-aerosol fuel mixture. Режим доступа: по договору с организацией-держателем ресурса |
| Jazyk: | angličtina |
| Vydáno: |
2019
|
| Témata: | |
| On-line přístup: | https://doi.org/10.3103/S0361521919010105 |
| Médium: | Elektronický zdroj Kapitola |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=664355 |
Podobné jednotky
Light-Induced Gasification of Fuels Prepared from Coal-Enrichment Wastes; Coke and Chemistry; Vol. 61, iss. 7
Vydáno: (2018)
Vydáno: (2018)
Light-induced gasification of the coal-processing waste: Possible products and regimes; Fuel; Vol. 212
Autor: Zaitsev A. S. Aleksandr Sergeevich
Vydáno: (2017)
Autor: Zaitsev A. S. Aleksandr Sergeevich
Vydáno: (2017)
The light-induced gasification of waste-derived fuel; Fuel; Vol. 197
Autor: Egorov R. I. Roman Igorevich
Vydáno: (2017)
Autor: Egorov R. I. Roman Igorevich
Vydáno: (2017)
Effect of the Addition of Petrochemicals onto the Atomization and Ignition of the Coal-Water Slurry Prepared from the Wastes; Applied Sciences; Vol. 10, iss. 23
Autor: Taburchinov R. I. Roman Iljich
Vydáno: (2020)
Autor: Taburchinov R. I. Roman Iljich
Vydáno: (2020)
Intensity dependent features of the light-induced gasification of the waste-derived coal-water compositions; Renewable Energy; Vol. 146
Vydáno: (2020)
Vydáno: (2020)
Numerical analysis of the underground coal gasification syngas composition in dependence to supplied oxidizer properties; 11th International Forum on Strategic Technology (IFOST 2016); Pt. 2
Autor: Subbotin A. N. Aleksandr Nikolaevich
Vydáno: (2016)
Autor: Subbotin A. N. Aleksandr Nikolaevich
Vydáno: (2016)
Investigation of characteristics of gas and coke residue for the regime of quasi- and non-stationary steam gasification of coal in a fluidized bed: Part 1; Energy; Vol. 251
Vydáno: (2022)
Vydáno: (2022)
Combustion, Pyrolysis, and Gasification of Waste-Derived Fuel Slurries, Low-Grade Liquids, and High-Moisture Waste: Review; Applied Sciences; Vol. 12, iss. 3
Autor: Vershinina K. Yu. Kseniya Yurievna
Vydáno: (2022)
Autor: Vershinina K. Yu. Kseniya Yurievna
Vydáno: (2022)
Plasma gasification of frying oil to produce hydrogen-rich synthesis gas and nanodispersed carbon material; Biomass and Bioenergy; Vol. 194
Vydáno: (2025)
Vydáno: (2025)
Allothermal gasification of peat and lignite by a focused light flow; Applied Sciences; Vol. 10, iss. 8
Vydáno: (2020)
Vydáno: (2020)
The prospects of burning coal and oil processing waste in slurry, gel, and solid state; Applied Thermal Engineering; Vol. 156
Vydáno: (2019)
Vydáno: (2019)
Математическое моделирование совместной конверсии угля и шлама сточных вод в обращенном слоевом газогенераторе; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 330, № 2
Autor: Донской И. Г. Игорь Геннадьевич
Vydáno: (2019)
Autor: Донской И. Г. Игорь Геннадьевич
Vydáno: (2019)
Gas composition during thermochemical conversion of dry solid fuels and waste-derived slurries; Environmental Science and Pollution Research (ESPR); Vol. 30, iss. 9
Vydáno: (2023)
Vydáno: (2023)
The propagation and ignition of the finely dispersed coal-water aerosol; Fuel; Vol. 263
Vydáno: (2020)
Vydáno: (2020)
The numerical study of allothermal gasification of the peat by the focused light flow; Applied Thermal Engineering; Vol. 195
Autor: Egorov R. I. Roman Igorevich
Vydáno: (2021)
Autor: Egorov R. I. Roman Igorevich
Vydáno: (2021)
Combustion of Coal Flotation Wastes and Woodworking Wastes in Blends and Suspensions; Coke and Chemistry; Vol. 62, iss. 5
Vydáno: (2019)
Vydáno: (2019)
Pilot Tests of a Fixed-Bed Coal Gasifier; Thermal Engineering; Vol. 68, iss. 6
Vydáno: (2021)
Vydáno: (2021)
Methane hydrate regasification to intensify the combustion of low-rank coal fuels; Fuel; Vol. 381, pt. 2
Vydáno: (2025)
Vydáno: (2025)
Steam gasification of coal in a fluidized bed: Part 2; Energy; Vol. 334
Autor: Shevyrev S. A. Sergey Aleksandrovich
Vydáno: (2025)
Autor: Shevyrev S. A. Sergey Aleksandrovich
Vydáno: (2025)
Environmental, economic and energetic benefits of using coal and oil processing waste instead of coal to produce the same amount of energy; Energy Conversion and Management; Vol. 174
Autor: Nyashina G. S. Galina Sergeevna
Vydáno: (2018)
Autor: Nyashina G. S. Galina Sergeevna
Vydáno: (2018)
Coal and petroleum-derived components for high-moisture fuel slurries; Energy; Vol. 219
Autor: Vershinina K. Yu. Kseniya Yurievna
Vydáno: (2021)
Autor: Vershinina K. Yu. Kseniya Yurievna
Vydáno: (2021)
Micro-explosive droplet fragmentation of environmentally promising coal-water slurries containing petrochemicals; Fuel; Vol. 283
Vydáno: (2021)
Vydáno: (2021)
Mathematical simulation of the ignition of coal particles in airflow; Solid Fuel Chemistry; Vol. 49, iss. 2
Autor: Glushkov D. O. Dmitry Olegovich
Vydáno: (2015)
Autor: Glushkov D. O. Dmitry Olegovich
Vydáno: (2015)
Using methane hydrate to intensify the combustion of low-rank coal fuels; Energy; Vol. 304
Vydáno: (2024)
Vydáno: (2024)
Study of the influence of heating rate on the process of grate gasification of Balakhta and Osinnikovsky coal deposits; 11th International Forum on Strategic Technology (IFOST 2016); Pt. 2
Vydáno: (2016)
Vydáno: (2016)
Influence of petrochemicals on jet characteristics after coal-water fuel spraying; Fuel Processing Technology; Vol. 218
Autor: Gvozdyakov D. V. Dmitry Vasilievich
Vydáno: (2021)
Autor: Gvozdyakov D. V. Dmitry Vasilievich
Vydáno: (2021)
Rheological properties of coal water slurries containing petrochemicals; Thermal Science; Vol. 2018, OnLine-First Issue
Vydáno: (2018)
Vydáno: (2018)
Combustion of Wet Coal Processing Waste and Coal Slime as Components of Fuel Slurries; Combustion Science and Technology; Vol. 193, iss. 7
Autor: Vershinina K. Yu. Kseniya Yurievna
Vydáno: (2020)
Autor: Vershinina K. Yu. Kseniya Yurievna
Vydáno: (2020)
Effect of the high-power electromagnetic pulses on the reactivity of the coal-water slurry in hot environment; Chinese Journal of Chemical Engineering; Vol. 28, iss. 12
Autor: Belonogov M. V. Maxim Vladimirovich
Vydáno: (2020)
Autor: Belonogov M. V. Maxim Vladimirovich
Vydáno: (2020)
Current status of the pyrolysis and gasification mechanism of biomass; Energies; Vol. 14, iss. 22
Vydáno: (2021)
Vydáno: (2021)
Exergy and energy analysis of a polygeneration scheme for hydrogen production using steam gasification of biomass; International Journal of Hydrogen Energy; Vol. 218
Autor: Shevyrev S. A. Sergey Aleksandrovich
Vydáno: (2026)
Autor: Shevyrev S. A. Sergey Aleksandrovich
Vydáno: (2026)
Математическое моделирование тепломассопереноса при подземной газификации угля; Известия Томского политехнического университета [Известия ТПУ]; Т. 325, № 4 : Техника и технологии в энергетике
Autor: Субботин А. Н. Александр Николаевич
Vydáno: (2014)
Autor: Субботин А. Н. Александр Николаевич
Vydáno: (2014)
Deformation and breakup of droplets of stabilized coal slime fuels interacting with an air jet; Advanced Powder Technology; Vol. 36, iss. 6
Vydáno: (2025)
Vydáno: (2025)
Comparative analysis of factors affecting differences in the concentrations of gaseous anthropogenic emissions from coal and slurry fuel combustion; Fuel; Vol. 270
Autor: Akhmetshin M. R. Mark Rustamovich
Vydáno: (2020)
Autor: Akhmetshin M. R. Mark Rustamovich
Vydáno: (2020)
Conversion of the Fuel Compositions of Peat and Rapeseed Oil into Producer Gas; Solid Fuel Chemistry; Vol. 55, No. 6
Autor: Belonogov M. V. Maxim Vladimirovich
Vydáno: (2021)
Autor: Belonogov M. V. Maxim Vladimirovich
Vydáno: (2021)
Aerosol Synthesis of Highly Dispersed Y3Al5O12:Ce3+ Phosphor with Intense Photoluminescence; Physics of the Solid State; Vol. 61, iss. 10
Vydáno: (2019)
Vydáno: (2019)
Анализ эффективности процесса газификации пылеугольного топлива в высокотемпературном потоке O2/N2 и O2/CO2 с помощью математического моделирования; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 332, № 11
Autor: Донской И. Г. Игорь Геннадьевич
Vydáno: (2021)
Autor: Донской И. Г. Игорь Геннадьевич
Vydáno: (2021)
Combustion dynamics of droplets of aqueous slurries based on coal slime and waste oil; Journal of the Energy Institute; Vol. 104
Vydáno: (2022)
Vydáno: (2022)
Combustion Characteristics of Coal-Water Slurry Droplets in High-Temperature Air with the Addition of Syngas; Energies; Vol. 16, iss. 8
Vydáno: (2023)
Vydáno: (2023)
Influence of the oxidizer on the formation and purification efficiency of acid gases produced during asphaltene gasification; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 333, № 4
Autor: Ermolaev D. V. Denis Vasilievich
Vydáno: (2022)
Autor: Ermolaev D. V. Denis Vasilievich
Vydáno: (2022)
Podobné jednotky
-
Light-Induced Gasification of Fuels Prepared from Coal-Enrichment Wastes; Coke and Chemistry; Vol. 61, iss. 7
Vydáno: (2018) -
Light-induced gasification of the coal-processing waste: Possible products and regimes; Fuel; Vol. 212
Autor: Zaitsev A. S. Aleksandr Sergeevich
Vydáno: (2017) -
The light-induced gasification of waste-derived fuel; Fuel; Vol. 197
Autor: Egorov R. I. Roman Igorevich
Vydáno: (2017) -
Effect of the Addition of Petrochemicals onto the Atomization and Ignition of the Coal-Water Slurry Prepared from the Wastes; Applied Sciences; Vol. 10, iss. 23
Autor: Taburchinov R. I. Roman Iljich
Vydáno: (2020) -
Intensity dependent features of the light-induced gasification of the waste-derived coal-water compositions; Renewable Energy; Vol. 146
Vydáno: (2020)