Ignition and combustion of pulverized coal and biomass under different oxy-fuel O₂/N₂ and O₂/CO₂ environments

This work studied the ignition and combustion of burning pulverized coals and biomasses particles under either conventional combustion in air or oxy-fuel combustion conditions. Oxy-fuel combustion is a 'clean-coal' process that takes place in O2/CO2 environments, which are achieved by remo...

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Online Access:http://hdl.handle.net/2047/d20004987
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spelling ndltd-NEU--neu-3368232021-05-26T05:10:00ZIgnition and combustion of pulverized coal and biomass under different oxy-fuel O₂/N₂ and O₂/CO₂ environmentsThis work studied the ignition and combustion of burning pulverized coals and biomasses particles under either conventional combustion in air or oxy-fuel combustion conditions. Oxy-fuel combustion is a 'clean-coal' process that takes place in O2/CO2 environments, which are achieved by removing nitrogen from the intake gases and recirculating large amounts of flue gases to the boiler. Removal of nitrogen from the combustion gases generates a high CO2-content, sequestration-ready gas at the boiler effluent. Flue gas recirculation moderates the high temperatures caused by the elevated oxygen partial pressure in the boiler. In this study, combustion of the fuels took place in a laboratory laminar-flow drop-tube furnace (DTF), electrically-heated to 1400 K, in environments containing various mole fractions of oxygen in either nitrogen or carbon-dioxide background gases.http://hdl.handle.net/2047/d20004987
collection NDLTD
sources NDLTD
description This work studied the ignition and combustion of burning pulverized coals and biomasses particles under either conventional combustion in air or oxy-fuel combustion conditions. Oxy-fuel combustion is a 'clean-coal' process that takes place in O2/CO2 environments, which are achieved by removing nitrogen from the intake gases and recirculating large amounts of flue gases to the boiler. Removal of nitrogen from the combustion gases generates a high CO2-content, sequestration-ready gas at the boiler effluent. Flue gas recirculation moderates the high temperatures caused by the elevated oxygen partial pressure in the boiler. In this study, combustion of the fuels took place in a laboratory laminar-flow drop-tube furnace (DTF), electrically-heated to 1400 K, in environments containing various mole fractions of oxygen in either nitrogen or carbon-dioxide background gases.
title Ignition and combustion of pulverized coal and biomass under different oxy-fuel O₂/N₂ and O₂/CO₂ environments
spellingShingle Ignition and combustion of pulverized coal and biomass under different oxy-fuel O₂/N₂ and O₂/CO₂ environments
title_short Ignition and combustion of pulverized coal and biomass under different oxy-fuel O₂/N₂ and O₂/CO₂ environments
title_full Ignition and combustion of pulverized coal and biomass under different oxy-fuel O₂/N₂ and O₂/CO₂ environments
title_fullStr Ignition and combustion of pulverized coal and biomass under different oxy-fuel O₂/N₂ and O₂/CO₂ environments
title_full_unstemmed Ignition and combustion of pulverized coal and biomass under different oxy-fuel O₂/N₂ and O₂/CO₂ environments
title_sort ignition and combustion of pulverized coal and biomass under different oxy-fuel o₂/n₂ and o₂/co₂ environments
publishDate
url http://hdl.handle.net/2047/d20004987
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