LAPSE:2024.1080
Published Article
LAPSE:2024.1080
Numerical Simulation of Hydrogen−Coal Blending Combustion in a 660 MW Tangential Boiler
Lijiang Dong, Shangwen Huang, Baiyun Qian, Kaike Wang, Ning Gao, Xiang Lin, Zeqi Shi, Hao Lu
June 10, 2024
Abstract
With the adjustment of energy structure, the utilization of hydrogen energy has been widely attended. China’s carbon neutrality targets make it urgent to change traditional coal-fired power generation. The paper investigates the combustion of pulverized coal blended with hydrogen to reduce carbon emissions. In terms of calorific value, the pulverized coal combustion with hydrogen at 1%, 5%, and 10% blending ratios is investigated. The results show that there is a significant reduction in CO2 concentration after hydrogen blending. The CO2 concentration (mole fraction) decreased from 15.6% to 13.6% for the 10% hydrogen blending condition compared to the non-hydrogen blending condition. The rapid combustion of hydrogen produces large amounts of heat in a short period, which helps the ignition of pulverized coal. However, as the proportion of hydrogen blending increases, the production of large amounts of H2O gives an overall lower temperature. On the other hand, the temperature distribution is more uniform. The concentrations of O2 and CO in the upper part of the furnace increased. The current air distribution pattern cannot satisfy the adequate combustion of the fuel after hydrogen blending.
Keywords
hydrogen power generation, numerical simulation, pulverized coal combustion, tangential boiler
Suggested Citation
Dong L, Huang S, Qian B, Wang K, Gao N, Lin X, Shi Z, Lu H. Numerical Simulation of Hydrogen−Coal Blending Combustion in a 660 MW Tangential Boiler. (2024). LAPSE:2024.1080
Author Affiliations
Dong L: State Grid Xinjiang Company Limited Electric Power Research Institute, Urumqi 830047, China
Huang S: Laboratory of Energy Carbon Neutrality, School of Electrical Engineering, Xinjiang University, Urumqi 830047, China
Qian B: State Grid Xinjiang Company Limited Electric Power Research Institute, Urumqi 830047, China
Wang K: State Grid Xinjiang Company Limited Electric Power Research Institute, Urumqi 830047, China
Gao N: State Grid Xinjiang Company Limited Electric Power Research Institute, Urumqi 830047, China
Lin X: State Grid Xinjiang Company Limited Electric Power Research Institute, Urumqi 830047, China
Shi Z: State Grid Xinjiang Company Limited Electric Power Research Institute, Urumqi 830047, China
Lu H: Laboratory of Energy Carbon Neutrality, School of Electrical Engineering, Xinjiang University, Urumqi 830047, China
Journal Name
Processes
Volume
12
Issue
2
First Page
415
Year
2024
Publication Date
2024-02-19
ISSN
2227-9717
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Original Submission
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PII: pr12020415, Publication Type: Journal Article
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LAPSE:2024.1080
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https://doi.org/10.3390/pr12020415
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Jun 10, 2024
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