Résumé
This work investigates the catalytic pyrolysis of spruce wood (SW) and swine manure (SM) in a pilot-scale auger reactor using two alkali and alkaline earth metal (AAEM) catalysts, namely, NaCl and MgCl2. Experiments evaluated the effects of temperature (400–600 °C), N2 flow rate (4–8 L/min), and solid residence time (75–125 s) on product properties. Temperature proved to be the main process driver. Increasing it from 400 to 600 °C shifted yields toward syngas, producing carbon-rich aromatic biochars with lower O/C and H/C ratios, and gas richer in CO, H2, and CH4. Conversely, higher N2 flow rates decreased oily phase yields and the water content. Under identical conditions, SM pyrolysis systematically yielded more biochar and aqueous phase but less oil and syngas than SW, due to its higher ash, AAEM, and nitrogen contents. For both feedstocks, NaCl and MgCl2 impregnation increased char and ash yields while elevating the bio-oil water content, especially with MgCl2, in line with the promotion of dehydration reactions induced by this catalyst. Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS) revealed that NaCl mildly affected the properties of SW-derived bio-oils, yielding slightly lower average m/z, O/C and unique compounds linked to lignin/hemicellulose degradation. Conversely, MgCl2 promoted CHO-type species detected as [M + Cl]− adducts with lower oxygen counts, stemming from cellulose and hemicellulose dehydration. Both catalysts induced chlorinated species in SW and SM bio-oils, with MgCl2 triggering denitrogenation. Finally, both AAEM chlorides seemed to promote decarboxylation and water-gas shift reactions, increasing syngas CO2 and H2 production at the expense of CO.
| langue originale | Anglais |
|---|---|
| Numéro d'article | 108033 |
| journal | Journal of Analytical and Applied Pyrolysis |
| Volume | 200 |
| Les DOIs | |
| état | Publié - nov. 2026 |
| Modification externe | Oui |
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