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International Symposium on Coal Combustion | 2013

Experimental Investigation on Improving the Removal Effect of WFGD System on Fine Particles by Heterogeneous Condensation

Jingjing Bao; Linjun Yang; Jinpei Yan; Guilong Xiong; Xianglin Shen

Heterogeneous condensation of water vapor as a preconditioning technique for the removal of fine particles from flue gas was investigated experimentally in a wet flue gas desulfurization (WFGD) system. A supersaturated vapor phase, necessary for condensational growth of fine particles, was achieved in the SO2 absorption zone and at the top of the wet FGD scrubber by adding steam in the gas inlet and above the scrubbing liquid inlet of the scrubber, respectively. The condensational grown droplets were then removed by the scrubbing liquid and a high-efficiency demister. The results show that the effectiveness of the WFGD system for removal of fine particles is related to the SO2 absorbent and the types of scrubber employed. Despite a little better effectiveness for the removal of fine particles in the rotating-stream-tray scrubber at the same liquid-to-gas ratio, The similar trends are obtained between the spray scrubber and rotating-stream-tray scrubber. Due to the formation of aerosol particles in the limestone and ammonia-based FGD processes, the fine particle removal efficiencies are lower than those for Na2CO3 and water. The performance of the WFGD system for removal of fine particles can be significantly improved for both steam addition cases, for which the removal efficiency increases with increasing amount of added steam. A high liquid to gas ratio is beneficial for efficient removal of fine particles by heterogeneous condensation of water vapor.


Chemical Engineering Journal | 2010

Removal of fine particles in wet flue gas desulfurization system by heterogeneous condensation

Linjun Yang; Jingjing Bao; Jinpei Yan; Jinhui Liu; Shijuan Song; Fengxian Fan


Journal of Aerosol Science | 2011

The formation and removal characteristics of aerosols in ammonia-based wet flue gas desulfurization

Jinpei Yan; Jingjing Bao; Linjun Yang; Fengxian Fan; Xianglin Shen


Archive | 2012

Method for cooperatively promoting agglomeration growth of PM (particulate matter) 2.5 and treating desulfuration wastewater in evaporation manner and device of method

Linjun Yang; Jingjing Bao; Guilong Xiong; Wen Zhao


Energy & Fuels | 2012

Separation of Fine Particles from Gases in Wet Flue Gas Desulfurization System Using a Cascade of Double Towers

Jingjing Bao; Linjun Yang; Shijuan Song; Guilong Xiong


Chemical Engineering and Processing | 2009

Experimental investigation on removal of coal-fired fine particles by a condensation scrubber

Fengxian Fan; Linjun Yang; Jinpei Yan; Jingjing Bao; Xianglin Shen


Chemical Engineering and Processing | 2011

Removal of fine particles by heterogeneous condensation in the double-alkali desulfurization process

Jingjing Bao; Linjun Yang; Weidi Sun; Junfeng Geng; Jinpei Yan; Xianglin Shen


Archive | 2011

Control method for aerosol in flue gas desulfurization by utilizing ammonia method and master desulfurizing tower

Linjun Yang; Jingjing Bao; Jinpei Yan


Archive | 2012

Device and method for enhancing removal of fine particle substances in flue gas desulfurization process of fire coal

Jingjing Bao; Jinhui Liu; Xianglin Shen; Jinpei Yan; Linjun Yang


Energy & Fuels | 2012

Improving the Removal of Fine Particles in the WFGD System by Adding Wetting Agents

Jingjing Bao; Linjun Yang; Wenwen Guo; Shijuan Song; Junfeng Geng

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Bin Lu

Southeast University

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