Investigation of combustion and gasification mechanically activated coal fuel of various degrees of metamorphism on the 5-MW heat setup
The technology of mechanochemical activation of combustion and gasification of coals is of unquestionable scientific and technical interest; an increase in chemical activity of coals at their mechanically activated grinding is associated with an increase in the rate of reaction of the coal substance...
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2017-01-01
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Series: | MATEC Web of Conferences |
Online Access: | https://doi.org/10.1051/matecconf/201711503009 |
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doaj-4d1757de7ad4456ba941065ea9a1fcf72021-03-02T08:59:44ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011150300910.1051/matecconf/201711503009matecconf_sts2017_03009Investigation of combustion and gasification mechanically activated coal fuel of various degrees of metamorphism on the 5-MW heat setupButakov Evgenii0Burdukov Anatoly1Kuznetsov Artem2Kutateladze Institute of Thermophysics, SB RASKutateladze Institute of Thermophysics, SB RASKutateladze Institute of Thermophysics, SB RASThe technology of mechanochemical activation of combustion and gasification of coals is of unquestionable scientific and technical interest; an increase in chemical activity of coals at their mechanically activated grinding is associated with an increase in the rate of reaction of the coal substance. To study the combustion and gasification process, the reactor model with tangential scroll input of coal-air suspension and cylindrical reaction chamber was used at the 5-MW thermal power plant. The experiments were carried out with coals of G and SS grades of the Kuznetsk deposit. Coal, ground after the boiler’s standard mill, is fed by a feeder to the disintegrator; then, it enters the scroll inlet of the reactor burner with transport air. The suspension is ignited by a gas igniting device with the power of 50 kW. In experiments on combustion and gasification of fine coal performed at the temperature in the reaction chamber of 1000-1300°C and air excess α = 0.5-0.7, the data on concentrations of CO and H2 were obtained: for coal of grade G, concentration of H2 was 6.3% and concentration of CO was 15.3%; for coal of SS grade, concentration of H2 was 9.5% and concentration of CO was 15.6%.https://doi.org/10.1051/matecconf/201711503009 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Butakov Evgenii Burdukov Anatoly Kuznetsov Artem |
spellingShingle |
Butakov Evgenii Burdukov Anatoly Kuznetsov Artem Investigation of combustion and gasification mechanically activated coal fuel of various degrees of metamorphism on the 5-MW heat setup MATEC Web of Conferences |
author_facet |
Butakov Evgenii Burdukov Anatoly Kuznetsov Artem |
author_sort |
Butakov Evgenii |
title |
Investigation of combustion and gasification mechanically activated coal fuel of various degrees of metamorphism on the 5-MW heat setup |
title_short |
Investigation of combustion and gasification mechanically activated coal fuel of various degrees of metamorphism on the 5-MW heat setup |
title_full |
Investigation of combustion and gasification mechanically activated coal fuel of various degrees of metamorphism on the 5-MW heat setup |
title_fullStr |
Investigation of combustion and gasification mechanically activated coal fuel of various degrees of metamorphism on the 5-MW heat setup |
title_full_unstemmed |
Investigation of combustion and gasification mechanically activated coal fuel of various degrees of metamorphism on the 5-MW heat setup |
title_sort |
investigation of combustion and gasification mechanically activated coal fuel of various degrees of metamorphism on the 5-mw heat setup |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2017-01-01 |
description |
The technology of mechanochemical activation of combustion and gasification of coals is of unquestionable scientific and technical interest; an increase in chemical activity of coals at their mechanically activated grinding is associated with an increase in the rate of reaction of the coal substance. To study the combustion and gasification process, the reactor model with tangential scroll input of coal-air suspension and cylindrical reaction chamber was used at the 5-MW thermal power plant. The experiments were carried out with coals of G and SS grades of the Kuznetsk deposit. Coal, ground after the boiler’s standard mill, is fed by a feeder to the disintegrator; then, it enters the scroll inlet of the reactor burner with transport air. The suspension is ignited by a gas igniting device with the power of 50 kW. In experiments on combustion and gasification of fine coal performed at the temperature in the reaction chamber of 1000-1300°C and air excess α = 0.5-0.7, the data on concentrations of CO and H2 were obtained: for coal of grade G, concentration of H2 was 6.3% and concentration of CO was 15.3%; for coal of SS grade, concentration of H2 was 9.5% and concentration of CO was 15.6%. |
url |
https://doi.org/10.1051/matecconf/201711503009 |
work_keys_str_mv |
AT butakovevgenii investigationofcombustionandgasificationmechanicallyactivatedcoalfuelofvariousdegreesofmetamorphismonthe5mwheatsetup AT burdukovanatoly investigationofcombustionandgasificationmechanicallyactivatedcoalfuelofvariousdegreesofmetamorphismonthe5mwheatsetup AT kuznetsovartem investigationofcombustionandgasificationmechanicallyactivatedcoalfuelofvariousdegreesofmetamorphismonthe5mwheatsetup |
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