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- W2391802095 abstract "A numerical model for the simulation of the aerosol condensational removal dynamics after ammonia desulfurization was proposed to predict the growth property of fine particles and removal efficiency.The simulation model was applicable for the aerosols discharge property of ammonia desulfurization.The results show that fine particles growth into droplets is very fast in a supersaturation vapor condition.Droplets complete growth time decrease and the final diameters of droplets are smaller at a higher initial particles number concentration.The removal efficiency of fine particles increases rapidly with the residence time,and achieves stability after 50~100 ms.Compared with the simulated values,experimental residence time appeares delate,which tend to stabilize at 1.5 s.Fine particles removal efficiency improved by condensational enlargement is dominated by the particles physicochemical characteristics after desulfurization.Removal efficiency increases with initial supersaturation degree rapidly only when the supersaturation degree higher than 1.4 with water scrubbing.However,condensational growth of fine particles is occurred at an extremely low supersaturation after ammonia desulfurization,and the removal efficiency increases with the supersaturation degree continuously." @default.
- W2391802095 created "2016-06-24" @default.
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- W2391802095 date "2011-01-01" @default.
- W2391802095 modified "2023-09-26" @default.
- W2391802095 title "Dynamics of Aerosol Condensational Removal in Ammonia Desulfurization Process" @default.
- W2391802095 hasPublicationYear "2011" @default.
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