Co-Gasification of Pistachio Shells with Wood Pellets in a Semi-Industrial Hybrid Cross/Updraft Reactor for Producer Gas and Biochar Production

Author:

Ryšavý Jiří1ORCID,Čespiva Jakub1ORCID,Kuboňová Lenka1,Dej Milan1ORCID,Szramowiat-Sala Katarzyna2ORCID,Molchanov Oleksandr1,Niedzwiecki Lukasz3ORCID,Yan Wei-Mon45,Thangavel Sangeetha45ORCID

Affiliation:

1. Energy Research Centre, Centre for Energy and Environmental Technologies, VSB—Technical University of Ostrava, 708 00 Ostrava, Czech Republic

2. Department of Coal Chemistry and Environmental Sciences, Faculty of Energy and Fuels, AGH University of Krakow, 30-059 Kraków, Poland

3. Department of Energy Conversion Engineering, Wrocław University of Science and Technology, 50-370 Wrocław, Poland

4. Department of Energy and Refrigerating Air-Conditioning Engineering, National Taipei University of Technology, Taipei 10608, Taiwan

5. Research Center of Energy Conservation for New Generation of Residential, Commercial and Industrial Sectors, National Taipei University of Technology, Taipei 10608, Taiwan

Abstract

The possibilities of pistachio shell biochar production on laboratory-scale gasification and pyrolysis devices have been described by several previous studies. Nevertheless, the broader results of the pistachio shell co-gasification process on pilot-scale units have not yet been properly investigated or reported, especially regarding the detailed description of the biochar acquired during the routine operation. The biochar was analysed using several analytical techniques, such as ultimate and proximate analysis (62%wt of C), acid–base properties analysis (pH 9.52), Fourier-transform infrared spectroscopy (the presence of –OH bonds and identification of cellulose, hemicellulose and lignin), Raman spectroscopy (no determination of Id/Ig ratio due to high fluorescence), and nitrogen physisorption (specific surface 50.895 m2·g−1). X-ray fluorescence analysis exhibited the composition of the main compounds in the biochar ash (32.5%wt of Cl and 40.02%wt of Na2O). From the energy generation point of view, the lower heating value of the producer gas achieved 6.53 MJ·m−3 during the co-gasification. The relatively high lower heating value of the producer gas was mainly due to the significant volume fractions of CO (6.5%vol.), CH4 (14.2%vol.), and H2 (4.8 %vol.), while hot gas efficiency accomplished 89.6%.

Funder

National Centre for Energy II

European Union

Operational Programme Just Transition

Publisher

MDPI AG

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