FACTORS AFFECTING THE ELECTRICAL RESISTIVITY OF KRAFT RECOVERY BOILER PRECIPITATOR ASH, 2013 PEERS Conference
Please Note: This document will be available in PDF format in the "My Electronic Documents" link on the home page once your order has been completed. Please make sure you have the latest version of Acrobat Reader. Click on the Acrobat Reader icon to check for the latest version, it’s FREE. To print a hardcopy of a PDF file correctly you must have a postscript printer. If you are not sure if your printer is a postscript printer please refer to your owner’s manual.
Purchase of electronic (downloadable) documents made at www.tappi.org by credit cards, followed by instant download CANNOT be cancelled. We do not offer refunds on electronic download documents.
The electrical resistivity of ash particles is an important parameter that determines the efficiency of electrostatic precipitators (ESPs). This systematic study examines the resistivity of recovery boiler precipitator ash as a function of electrical field strength, time of exposure, particle composition, and gas composition and temperature. Both synthetic ash and actual ash samples from several pulp mills are used. The results show that most ash samples tested had a resistivity between 109 and 1010 Ωcm, but one of the samples had an unusually high resistivity, 1012 Ωcm. The resistivity increases with temperature up to about 140oC, then decreases. At a given temperature, the resistivity decreases with increasing moisture and SO2 concentration in the gas. Resistivity also increases with an increase in chloride content in the ash, but is not affected by the carbonate, sulphate and potassium contents. The results imply that recovery boilers burning liquors with high solids and high chloride contents produce ash with a higher resistivity, making it more difficult for ESPs to capture.