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Experimental study on performance of flow & desulfurisation of a gas-liquid screen scrubber for wet flue gas desulfurization 被引量:2

Experimental study on performance of flow & desulfurisation of a gas-liquid screen scrubber for wet flue gas desulfurization
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摘要 In the paper, the gas-liquid two-phase flow performance and desulfurisation performance of the gas-liquid screen scrubber were experimentally studied when limestone was used as absorbent. Experiments were carried out at varying the flue gas velocity and slurry flux in concurrent and countercurrent tower respectively. The experimental results showed that the flow resistance of absorber increased rapidly with an increase of the flue gas velocity whether in concurrent or in countercurrent tower, and the up trend of the flow resistance in the countercurrent tower was higher than those in the concurrent one. The influence of the flue gas velocity on the flow resistance of absorber was more than those of the slurry flux density. Whether in the concurrent tower or in the countercurrent one, increasing the flue gas velocity or the slurry flux density would enhance the desulphurization efficiency. The influence of the slurry flux density on the desulfurisation efficiency was greater than those of the flue gas velocity. In the paper, the gas-liquid two-phase flow performance and desulfurisation performance of the gas-liquid screen scrubber were experimentally studied when limestone was used as absorbent. Experiments were carried out at varying the flue gas velocity and slurry flux in concurrent and countercurrent tower respectively. The experimental results showed that the flow resistance of absorber increased rapidly with an increase of the flue gas velocity whether in concurrent or in countereurrent tower, and the up trend of the flow resistance in the cotmtercurrent tower was higher than those in the concurrent one. The influence of the flue gas velocity on the flow resistance of absorber was more than those of the slurry flux density. Whether in the concurrent tower or in the cotmtercurrent one, increasing the flue gas velocity or the slurry flux density would enhance the desulphurization efficiency. The influence of the slurry flux density on the desulfurisation efficiency was greater than those of the flue gas velocity.
出处 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2007年第5期727-731,共5页 哈尔滨工业大学学报(英文版)
基金 Sponsored by the National Natural Science Foundation of China (Grant No 50476050) and the PHD Foundation of NCEPU
关键词 石油 天然气 加工技术 设计方案 gas-liquid screen scrubber wet flue gas desulfurisation (WFGD) flow resistance desulphurization
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  • 1孔华,高翔,吕同波,方航宇,骆仲泱,岑可法.液柱冲击式湿法脱硫装置的试验研究[J].工程热物理学报,2001,22(5):649-652. 被引量:4
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