Co-Pyrolysis of Coal/Biomass and Coal/Sewage Sludge Mixtures

Author:

Storm C.1,Ru¨diger H.1,Spliethoff H.1,Hein K. R. G.1

Affiliation:

1. Institut fu¨r Verfahrenstechnik und Dampfkesselwesen, (Institute for Process Engineering and Power Plant Technology) University of Stuttgart, Pfaffenwaldring 23, D-70569 Stuttgart, Germany

Abstract

Biomass and sewage sludge are attracting increasing interest in power plant technology as a source of carbon-dioxide-neutral fuels. A new way to reduce the consumption of fossil fuels could be the co-combustion or co-gasification of coal and biomass or coal and sewage sludge. In both cases, pyrolysis is the first step in the technical process. In order to obtain detailed information about the pyrolysis of coal/biomass and coal/sewage sludge mixtures as well as unblended fuels, the “Institute fu¨r Verfahrenstechnik und Dampfkesselwesen (IVD)” at the University of Stuttgart has carried out investigations using an electrically heated entrained flow reactor. The test runs provided information about fuel conversion efficiency, pyrolysis gas and tar yield, and composition of pyrolysis gas and tar. Besides gas and tar analysis investigations regarding the path of trace elements, like heavy metals, alkali, chlorine and nitrogen components, during the pyrolysis process varying different parameters have been carried out. The fuel nitrogen distribution between pyrolysis gas, tar, and char has been analyzed, as well as the ash composition, and, thus, the release of mineral components during pyrolysis.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference18 articles.

1. Kicherer A., Gerhardt T., Spliethoff, H., and Hein, K. R. G., “Co-Combustion of Biomass/Sewage Sludge with Hard Coal in a Pulverized Fuel Semi-Industrial Test Rig,” Final Report, in: Bemtgen, J. M., Hein, K. R. G., and Minchener, A. J., “Combined Combustion of Biomass/Sewage Sludge and Coals, EC-Research Programme,” APAS-Contract COAL-CT92-0002, Institute for Process Engineering and Power Plant Technology, University of Stuttgart, 1995.

2. Lungwitz H., “Thermische Kla¨rschlammbehandlung,” Berichte der Abwassertechnischen Vereinigung (ATV) Nr. 42, St. Augustin, 1992.

3. Kaminsky W., “Kla¨rschlammpyrolyse: Vor dem großtechnischen Einsatz,” Chemische Industrie Nr. 6, 1987.

4. Lindner K.-H., “Anforderung an die Kla¨rschlammentsorgung,” Berichte der Abwassertechnischen Vereinigung (ATV) Nr. 42, St. Augustin, 1992.

5. Greul, U., Magel, C, Moersch, O., Ru¨diger, H., Storm, C., Schnell, U., Spliethoff, H., and Hein, K. R. G., “Einsatz von kohlesta¨mmigem Pyrolysegas als Reduktionsbrennstoff,” Final Report, Proj. No. 0326766A, German Federal Ministry of Education, Science, Research, and Technology BMBF, Bonn, 1996.

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