Combustion and Emission Characteristics of Utility Boiler burning Anthracite-Bituminous Coal Blends
Ho‐Young Park, Young‐Joo Kim, Hyun-Joo Park, Sung‐Chul Kim
Abstract
Ho‐Young Park, Young‐Joo Kim, Hyun-Joo Park, Sung‐Chul Kim
Abstract
The combustion behaviors of the blends of Korean anthracite, bituminous coal and their blends were studied with a thermogravimetric analyzer. Concerning the burning profiles of the anthracite-bituminous coal blends in TGA, it has been observed the independent burning of two coals without any interaction between two coals. With the blends of 50% anthracite with 50% bituminous coal in weight basis, the combustion tests in a utility boiler have been carried out for the analysis of the combustion and operational characteristics by increasing the power output from 134 MW to 197 MW. The stable combustion has been observed in a boiler. With the increase of power output, the exhaust gas temperature was exceeded the design value of , so the combustion air was taken from atmosphere instead of the boiler penthouse.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The combustion behaviors of the blends of Korean anthracite, bituminous coal and their blends were studied with a thermogravimetric analyzer. Concerning the burning profiles of the anthracite-bituminous coal blends in TGA, it has been observed the independent burning of two coals without any interaction between two coals. With the blends of 50% anthracite with 50% bituminous coal in weight basis, the combustion tests in a utility boiler have been carried out for the analysis of the combustion and operational characteristics by increasing the power output from 134 MW to 197 MW. The stable combustion has been observed in a boiler. With the increase of power output, the exhaust gas temperature was exceeded the design value of , so the combustion air was taken from atmosphere instead of the boiler penthouse.
Key concepts: Anthracite, Bituminous coal, Combustion, Boiler (water heating), Coal, Thermogravimetric analysis, Waste management, Coal combustion products