Technical Description of Parameters Influencing the pH Value of Suspension Absorbent Used in Flue Gas Desulfurization Systems

Author:

Głomba Michał1

Affiliation:

1. a Faculty of Environmental Engineering , Wrocław University of Technology , Wrocław , Poland

Publisher

Informa UK Limited

Subject

Management, Monitoring, Policy and Law,Waste Management and Disposal

Reference9 articles.

1. Williams, P.J. Wet Flue Gas Desulfurization Pilot Plant Testing of High Velocity Absorber Modules. Presented at the Electrical Power Research Institute-Department of Energy-U.S. Environmental Protection Agency Combined Utility Air Pollution Control Symposium, Atlanta, GA, August, 1999; pp 16–20.

2. Eden, D.; Heiting, B.; Lucas, M. Calculation and Optimization of Flue Gas SO2 Washers (in German); VGB Kraftwerkstechnik 1977, 77, 505–511.

3. Cheng, C.M.; Walker, H. Mechanisms Controlling Leaching Kinetics of Fixated Flue Gas Desulfurization (FGD) Material: The pH Effect. Presented at the International Ash Utilization Symposium, Center for Applied Energy Research, University of Kentucky, 2003; Paper 67.

4. Limestone Dissolution Studies; Final Report; EPRI CS-4845; Research Project 1031-4 TOL No. 2; Radian Corporation: Oakville, Ontario, Canada, 1986.

5. Hencel, D.S.; Laseke, B.A.; Smith, E.O.; Swenson, D.O. Limestone FGD Scrubbers: User’s Handbook; Project Summary; Prepared for the U.S. Environmental Protection Agency, Industrial Environmental Research Laboratory by PEDCo Environmental: Cincinnati, OH, 1981.

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