Effects of reaction conditions on the hydrogenolyses of cation exchanged coals

The effects of reaction temperature and the amount of metal on the hydrogenolysis of cation (Co 2+ or Ni 2+) exchanged Adaro subbituminous coal in tetralin with elemental sulfur were discussed. In comparison with the reactions of the demineralized coal with metallocene complex [(C 5H 5) 2Co or (C 5H...

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Veröffentlicht in:Fuel processing technology 2004-07, Vol.85 (8), p.837-848
Hauptverfasser: Sugano, Motoyuki, Hirano, Katsumi, Mashimo, Kiyoshi
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Sprache:eng
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Zusammenfassung:The effects of reaction temperature and the amount of metal on the hydrogenolysis of cation (Co 2+ or Ni 2+) exchanged Adaro subbituminous coal in tetralin with elemental sulfur were discussed. In comparison with the reactions of the demineralized coal with metallocene complex [(C 5H 5) 2Co or (C 5H 5) 2Ni] at 400–440 °C, the yield of residue decreased on the reactions of cation exchanged coals. It was clarified that the hydrogen transfer from gaseous hydrogen and tetralin to coal radicles by the catalytic activity of the sulfurized Co or Ni appeared significantly due to the fire dispersion of the Co 2+ or Ni 2+ into coal macromolecules through the ion exchange with carboxylic groups. Accordingly, the catalytic effect of exchanged Co or Ni to coal was superior to that of metal derived from (C 5H 5) 2Co or (C 5H 5) 2Ni. On the simultaneous hydrogenolyses of demineralized and cation exchanged coals, the upgrading of demineralized coal was enhanced by the catalytic effect of cation in the exchanged coal. Therefore, it is estimated that the amount of coal fed to cation exchange treatment can be reduced by the simultaneous reaction.
ISSN:0378-3820
1873-7188
DOI:10.1016/j.fuproc.2003.11.029