Collection of low resistivity fly ash in an electrostatic precipitator

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Abstract

Due to increasing restrictions on dust emission limits (IED directive), particularly in the fine particle size range, wider application of electrostatic precipitators (ESPs) in cleaning the combustion gases from stoker boilers can be anticipated. The objective of the model studies in this paper was to select the optimal construction of the discharge electrode in ESP for obtaining high collection efficiency of fly ash leaving stoker boilers. In these studies a test bench was constructed, which comprised one-stage model ESPs with a set of discharge and collecting electrodes. The main dimensions of the precipitator chamber were as follows: length of electric field 2.0 m; active height 0.45 m and spacing between the collecting electrodes 0.4 m. Four constructions of discharge electrode were tested for fly ash of different fractional sizes and chemical compositions. The aim of the tests was to determine the current-voltage characteristics and the discharge current distribution on the collection electrode so as to find out the optimal construction and ensure the maximal collection efficiency of ESP. The results of the collection efficiency measurements in these tests were compared with those obtained from an ordinary industrial ESP. The comparison shows that it is necessary to optimise the discharge electrode construction for a specific physico-chemical property of fly ash so as to obtain the highest collection efficiency. © Published under licence by IOP Publishing Ltd.

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Jȩdrusik, M., Świerczok, A., & Jaworek, A. (2013). Collection of low resistivity fly ash in an electrostatic precipitator. In Journal of Physics: Conference Series (Vol. 418). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/418/1/012069

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