Ignition of Coal-Water Fuel with the Addition of the Liquid Fraction of Rubber Pyrolysis Products

The results of experimental studies of the ignition process of droplets of multicomponent coal-water suspensions based on long flame coal with the addition of liquid pyrolysis products of rubber waste are presented. The heating, ignition and combustion processes were observed using a high-speed vide...

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Published in:Chemical and petroleum engineering Vol. 56; no. 1-2; pp. 42 - 47
Main Authors: Gvozdyakov, D. V., Gubin, V. E., Larionov, K. B., Zenkov, A. V.
Format: Journal Article
Language:English
Published: New York Springer US 01-05-2020
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Abstract The results of experimental studies of the ignition process of droplets of multicomponent coal-water suspensions based on long flame coal with the addition of liquid pyrolysis products of rubber waste are presented. The heating, ignition and combustion processes were observed using a high-speed video camera (up to 3600 frames per second), which provides highly reliable results. The experiments were performed in an oxidizing environment (still air) heated to high temperatures (873–1273 K). It was found that the value of the stable ignition delay time of droplets decreases by 21–54 % under conditions corresponding to the combustion chambers (temperature 1273 K) and with the mass concentration of the liquid combustible component at 3–8 %.
AbstractList The results of experimental studies of the ignition process of droplets of multicomponent coal-water suspensions based on long flame coal with the addition of liquid pyrolysis products of rubber waste are presented. The heating, ignition and combustion processes were observed using a high-speed video camera (up to 3600 frames per second), which provides highly reliable results. The experiments were performed in an oxidizing environment (still air) heated to high temperatures (873–1273 K). It was found that the value of the stable ignition delay time of droplets decreases by 21–54 % under conditions corresponding to the combustion chambers (temperature 1273 K) and with the mass concentration of the liquid combustible component at 3–8 %.
Audience Academic
Author Zenkov, A. V.
Gubin, V. E.
Larionov, K. B.
Gvozdyakov, D. V.
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  givenname: A. V.
  surname: Zenkov
  fullname: Zenkov, A. V.
  organization: Tomsk Polytechnic University
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Issue 1-2
Keywords temperature
liquid fraction of rubber waste pyrolysis products
droplet
ignition
coal-water fuel
Language English
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Snippet The results of experimental studies of the ignition process of droplets of multicomponent coal-water suspensions based on long flame coal with the addition of...
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SubjectTerms Chemistry
Chemistry and Materials Science
Coal
Combustion
Combustion chambers
Delay time
Droplets
Flammability
Frames per second
Geotechnical Engineering & Applied Earth Sciences
Ignition
Industrial Chemistry/Chemical Engineering
Industrial Ecology
Industrial Pollution Prevention
Mineral Resources
Oxidation
Pyrolysis
Rubber
Title Ignition of Coal-Water Fuel with the Addition of the Liquid Fraction of Rubber Pyrolysis Products
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