UPSWING Unification of Power Plant

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1 UPSWING Unification of Power Plant and Solid Waste Incineration on the Grate Dipl.-Ing. Joerg Maier University Stuttgart Institute of Process Engineering and Power Plant Technology Pfaffenwaldring 23, Stuttgart, Germany Phone: Fax: Budapest,16-17 October 2003

2 Motivation Development of an Competitive, Sustainable and Environmentally Friendly Thermal Waste Treatment Process Improved Technology applicable for States with Landfill as Major Waste Treatment Technology

3 Schema of UPSWING Process Steam SO 2 - Scrubber Waste Boiler Filter Scrubber Dioxin SO 2 NO x Heavy Metals HCl Hg Coal Gride Incinerator Grate Incinerator Power Plant

4 General Project Information Contract no. ENK5-CT Starting date: Duration: 3 years 11 Partners, 3 EU, 4 NAS 7 Universities and Research Centres USTUTT, FZK, TU-Wroclaw, CTU-Prague, UP-Timisoara, ISPE of Bucharest, TU-Sofia 4 Industrial Partner Mitsui Babcock, KEMA, Elektrownia Turów, Sokolovska Uhelna

5 Project Structure WP 7 Co-ordination and management WP 1 country specific data WP 2 coupling aspects WP 3 Impact on combustion WP 6 guidebook WP 4 emission behaviour WP 5 economic assessment

6 WP 1: Country specific Data Waste: Potential of fuel sources Current waste management strategies and utilisation systems Origin and composition of waste Power Plants: Power plants (location, design, operation) Flue gas treatment devices National regulations Available fuel qualities

7 Country Specific Data (Poland) Distribution of Power Stations landfill-% 95,7 landfill-number 1036 recycling-% 1,37 composting-% 2,8 incineration-% 0,13 incineration-plants number 1

8 WP 2: Theoretical aspects of coupling Thermodynamic analyses of 2 sides Evaluation of options for flue gas coupling Evaluation of start up/ shut down measures Evaluation of emergency measures Sensitivity and redundance analysis Identification of necessary equipment and cost ( 8 Partner)

9 WP 3: Impact on power plant combustion Impact on Milling System Ignition, Flame Stability Best flue gas injection mode Combustion and burnout (TU-Sofia, USTUTT)

10 WP 4: Emission behaviour Impact of coupling on emissions (NO X, SO 2, CO) Adsorption of pollutants (PCDD/F, Hg) on coal particle (bituminous coal, lignite) Destruction of pollutants (PCDD/F) at high temperatures Chemistry of a acid scrubber (fine particles, HCl, Hg) Impact on solid power residues by coupling (Partners: USTUTT, FZK, UP-Timisoara, TU-Wroclaw)

11 WP 5: Economic assessment Economical assessment of UPSWING at two sides Comparison between UPSWING and standalone process Determination of market potential

12 Expected Results and Exploitation Formulation of a guidebook (technical, environmental and economical issues) Public reports of specific topics Papers and presentations Partners will act as experts and consultancies at a future large scale demonstration plant Project homepage:

13 Acknowledgement The work performed is funded by the European Community within the 5th framework contract number ENK5-CT The partners gratefully acknowledge this funding J. Maier, K.R.G. Hein University Stuttgart Institute for Process Engineering and Power Plant Technology Pfaffenwaldring 23, Stuttgart, Germany Phone: Fax: Universität Stuttgart

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