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Highly efficient removal of sulfuric acid aerosol by a combined wet electrostatic precipitator

机译:组合式湿式静电除尘器高效去除硫酸气溶胶

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Eliminating sulfuric acid aerosol from flue gas is of vital importance to improve air quality. In this paper, a wet electrostatic precipitator (WESP) assisted with novel pre-charger was proposed to efficiently remove sulfuric acid aerosol. Parameters including residence time, gas temperature and SO3 concentration were studied to find the key factors influencing sulfuric acid aerosol removal. Results showed that the removal efficiency of sulfuric acid aerosol increased with the increasing residence time and the decreasing gas temperature. The maximum corona current was reduced from 0.79 to 0.28 mA when the SO3 concentration increased from 0 to 25 ppm, and the removal efficiency also decreased with the increasing SO3 concentration. A novel perforated pre-charger was designed to improve the WESP performance for sulfuric acid aerosol removal. With assistance of the pre-charger, the removal efficiency was improved from 90.3 to 95.8%, and the corresponding emission concentration was lower than 2 mg m?3. Moreover, the removal efficiency could be further improved to 97.8% with a heat exchanger, and the corresponding emission concentration could be lower than 1 mg m?3.
机译:从烟气中消除硫酸气溶胶对于改善空气质量至关重要。为了有效地去除硫酸气溶胶,本文提出了一种新型新型预充器辅助的湿式静电除尘器(WESP)。研究了停留时间,气体温度和SO 3 浓度等参数,以找出影响硫酸气溶胶去除的关键因素。结果表明,随着停留时间的增加和气体温度的降低,硫酸气溶胶的去除效率增加。当SO 3 浓度从0增加到25 ppm时,最大电晕电流从0.79降低到0.28 mA,并且随着SO 的增加,去除效率也降低。 3 浓度。设计了一种新型的带孔预充电器,以提高WESP去除硫酸气溶胶的性能。在预充电器的辅助下,去除效率从90.3提高到95.8%,相应的排放浓度低于2 mg m ?3 。此外,用热交换器可以将去除效率进一步提高到97.8%,相应的排放浓度可以低于1mg m ?3

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