Experimental Investigation of the Combustion of Bituminous Coal in Air and O2/CO2 Mixtures: 1. Particle Imaging of the Combustion of Coal and Char

Combustion of a low-volatile bituminous coal in air versus two O2/CO2 mixtures (21/79 and 27/73, v/v) was conducted at two furnace temperatures of 800 and 1000 °C in a lab-scale drop tube furnace (DTF). Through in situ photographic observation and measurement of overall coal burnout rate, CO emissio...

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Main Authors: Zhang, L., Binner, E., Chen, L., Qiao, Y., Li, Chun-Zhu, Bhattacharya, S., Ninomiya, Y.
Format: Journal Article
Published: American Chemical Society 2010
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/37630
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author Zhang, L.
Binner, E.
Chen, L.
Qiao, Y.
Li, Chun-Zhu
Bhattacharya, S.
Ninomiya, Y.
author_facet Zhang, L.
Binner, E.
Chen, L.
Qiao, Y.
Li, Chun-Zhu
Bhattacharya, S.
Ninomiya, Y.
author_sort Zhang, L.
building Curtin Institutional Repository
collection Online Access
description Combustion of a low-volatile bituminous coal in air versus two O2/CO2 mixtures (21/79 and 27/73, v/v) was conducted at two furnace temperatures of 800 and 1000 °C in a lab-scale drop tube furnace (DTF). Through in situ photographic observation and measurement of overall coal burnout rate, CO emission profile, and unburnt char properties, a variety of distinct phenomena relating to oxy-fuel combustion has been revealed. Consistent with the literature, the significant thermal effect of CO2 due to its large product of Cpρ (specific heat capacity and density) relative to that of N2 retarded volatile ignition in the two O2/CO2 mixtures. As a result, the volatiles released in O2/CO2 remained as a thick protective sheath on char surface for a relatively long duration, which mainly converted into CO through partial oxidation in 21% O2/79% CO2.Increasing the O2 fraction to 27% in CO2 triggered the ignition/oxidation of the unburnt volatiles once their concentrations were critically accumulated on char surface in a relatively low position in the DTF. Char oxidation behavior in the late stages of the DTF was also greatly changed under oxy-fuel conditions. Due to an insufficient O2 in char particle vicinity, the partial oxidation and even gasification of char to CO were favored during oxy-firing, which yielded less enthalpy heat and hence lowered char particle temperature substantially. Char consumption rate was, however, affected little or even slightly increased. A detailed mathematical modeling is required to quantitatively clarify the oxidation behavior of coal char in the presence of the abundant CO2 in the DTF.
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publishDate 2010
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spelling curtin-20.500.11937-376302017-09-13T15:59:55Z Experimental Investigation of the Combustion of Bituminous Coal in Air and O2/CO2 Mixtures: 1. Particle Imaging of the Combustion of Coal and Char Zhang, L. Binner, E. Chen, L. Qiao, Y. Li, Chun-Zhu Bhattacharya, S. Ninomiya, Y. particle char coal bituminous CO2 air O2 combustion imaging Combustion of a low-volatile bituminous coal in air versus two O2/CO2 mixtures (21/79 and 27/73, v/v) was conducted at two furnace temperatures of 800 and 1000 °C in a lab-scale drop tube furnace (DTF). Through in situ photographic observation and measurement of overall coal burnout rate, CO emission profile, and unburnt char properties, a variety of distinct phenomena relating to oxy-fuel combustion has been revealed. Consistent with the literature, the significant thermal effect of CO2 due to its large product of Cpρ (specific heat capacity and density) relative to that of N2 retarded volatile ignition in the two O2/CO2 mixtures. As a result, the volatiles released in O2/CO2 remained as a thick protective sheath on char surface for a relatively long duration, which mainly converted into CO through partial oxidation in 21% O2/79% CO2.Increasing the O2 fraction to 27% in CO2 triggered the ignition/oxidation of the unburnt volatiles once their concentrations were critically accumulated on char surface in a relatively low position in the DTF. Char oxidation behavior in the late stages of the DTF was also greatly changed under oxy-fuel conditions. Due to an insufficient O2 in char particle vicinity, the partial oxidation and even gasification of char to CO were favored during oxy-firing, which yielded less enthalpy heat and hence lowered char particle temperature substantially. Char consumption rate was, however, affected little or even slightly increased. A detailed mathematical modeling is required to quantitatively clarify the oxidation behavior of coal char in the presence of the abundant CO2 in the DTF. 2010 Journal Article http://hdl.handle.net/20.500.11937/37630 10.1021/ef100314k American Chemical Society restricted
spellingShingle particle
char
coal
bituminous
CO2
air
O2
combustion
imaging
Zhang, L.
Binner, E.
Chen, L.
Qiao, Y.
Li, Chun-Zhu
Bhattacharya, S.
Ninomiya, Y.
Experimental Investigation of the Combustion of Bituminous Coal in Air and O2/CO2 Mixtures: 1. Particle Imaging of the Combustion of Coal and Char
title Experimental Investigation of the Combustion of Bituminous Coal in Air and O2/CO2 Mixtures: 1. Particle Imaging of the Combustion of Coal and Char
title_full Experimental Investigation of the Combustion of Bituminous Coal in Air and O2/CO2 Mixtures: 1. Particle Imaging of the Combustion of Coal and Char
title_fullStr Experimental Investigation of the Combustion of Bituminous Coal in Air and O2/CO2 Mixtures: 1. Particle Imaging of the Combustion of Coal and Char
title_full_unstemmed Experimental Investigation of the Combustion of Bituminous Coal in Air and O2/CO2 Mixtures: 1. Particle Imaging of the Combustion of Coal and Char
title_short Experimental Investigation of the Combustion of Bituminous Coal in Air and O2/CO2 Mixtures: 1. Particle Imaging of the Combustion of Coal and Char
title_sort experimental investigation of the combustion of bituminous coal in air and o2/co2 mixtures: 1. particle imaging of the combustion of coal and char
topic particle
char
coal
bituminous
CO2
air
O2
combustion
imaging
url http://hdl.handle.net/20.500.11937/37630