Co-Combustion of Coal and Biomass: Heating Surface Slagging and Flue Gases; Fire; Vol. 8, iss. 3

書目詳細資料
Parent link:Fire.— .— Basel: MDPI AG
Vol. 8, iss. 3.— 2025.— Article number 106, 21 p.
其他作者: Zhuykov A. V. Andrey Vladimirovich, Glushkov D. O. Dmitry Olegovich, Pleshko Andrey Olegovich A. O., Grishina I. I. Irina Ivanovna, Chicherin S. V. Stanislav Viktorovich
總結:Title screen
An experimental study was carried out on the ignition and combustion processes of particles (100–200 µm in size) of coals of different degrees of metamorphism and biomass, as well as mixtures based on them, under conditions of conductive and convective heating, which correspond to the conditions of fuel ignition in boiler furnaces at grates and flaring combustion. The biomass contents in the composition of the coal-based fuel mixtures were 10, 20, and 30 wt.%. Under the conductive (at 700–1000 °C) and convective (at 500–800 °C) heating of fuel particles, ignition delay times were determined using a hardware–software complex for the high-speed video registration of fast processes. The ignition delay times were found to vary from 1 to 12.2 s for conductive heating and from 0.01 to 0.19 s for convective heating. The addition of 10–30 wt.% biomass to coals reduced the ignition delay times of fuel mixtures by up to 70%. An analysis of the flue gas composition during the combustion of solid fuels allowed us to establish the concentrations of the main anthropogenic emissions. The use of biomass as an additive (from 10 to 230 wt.%) to coal reduced NOx and SOx emissions by 19–42% and 24–39%, respectively. The propensity of fuels to cause slagging depending on their component composition was established. The use of up to 30 wt.% of biomass in the mixture composition did not affect the increase in the tendency to cause slagging on heating surfaces in the boiler furnace and did not pose a threat to the layer agglomeration during the layer combustion of the mixtures
Текстовый файл
語言:英语
出版: 2025
主題:
在線閱讀:https://doi.org/10.3390/fire8030106
格式: 電子 Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=679595

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330 |a An experimental study was carried out on the ignition and combustion processes of particles (100–200 µm in size) of coals of different degrees of metamorphism and biomass, as well as mixtures based on them, under conditions of conductive and convective heating, which correspond to the conditions of fuel ignition in boiler furnaces at grates and flaring combustion. The biomass contents in the composition of the coal-based fuel mixtures were 10, 20, and 30 wt.%. Under the conductive (at 700–1000 °C) and convective (at 500–800 °C) heating of fuel particles, ignition delay times were determined using a hardware–software complex for the high-speed video registration of fast processes. The ignition delay times were found to vary from 1 to 12.2 s for conductive heating and from 0.01 to 0.19 s for convective heating. The addition of 10–30 wt.% biomass to coals reduced the ignition delay times of fuel mixtures by up to 70%. An analysis of the flue gas composition during the combustion of solid fuels allowed us to establish the concentrations of the main anthropogenic emissions. The use of biomass as an additive (from 10 to 230 wt.%) to coal reduced NOx and SOx emissions by 19–42% and 24–39%, respectively. The propensity of fuels to cause slagging depending on their component composition was established. The use of up to 30 wt.% of biomass in the mixture composition did not affect the increase in the tendency to cause slagging on heating surfaces in the boiler furnace and did not pose a threat to the layer agglomeration during the layer combustion of the mixtures 
336 |a Текстовый файл 
461 1 |t Fire  |c Basel  |n MDPI AG 
463 1 |t Vol. 8, iss. 3  |v Article number 106, 21 p.  |d 2025 
610 1 |a электронный ресурс 
610 1 |a труды учёных ТПУ 
610 1 |a biomass; coal 
610 1 |a co-combustion 
610 1 |a ignition delay time 
610 1 |a slagging 
610 1 |a flue gases 
701 1 |a Zhuykov  |b A. V.  |g Andrey Vladimirovich 
701 1 |a Glushkov  |b D. O.  |c specialist in the field of power engineering  |c Professor, Director of the ISHFVP of the Tomsk Polytechnic University, Doctor of Technical Sciences  |f 1988-  |g Dmitry Olegovich  |9 16419 
701 1 |a Pleshko  |g Andrey Olegovich  |b A. O.  |f 1998-  |c specialist in the field of heat and power engineering and thermal engineering  |c Assistant of assistant of the department Tomsk Polytechnic University  |9 88770 
701 1 |a Grishina  |b I. I.  |g Irina Ivanovna 
701 1 |a Chicherin  |b S. V.  |g Stanislav Viktorovich 
801 0 |a RU  |b 63413507  |c 20250409 
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856 4 |u https://doi.org/10.3390/fire8030106  |z https://doi.org/10.3390/fire8030106 
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