Volume 39 Issue 06
Jun.  2011
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WANG Zhi-Cai, Li- Liang, Shui-Heng-Fu, Lei-Zhi-Ping, Lin-Shi-Biao, Kang-Shi-Gang, Pai-Chun-Xiu. High temperature thermal extraction of Xianfeng lignite and FT-IR characterization of its extracts and residues[J]. Journal of Fuel Chemistry and Technology, 2011, 39(06): 401-406.
Citation: WANG Zhi-Cai, Li- Liang, Shui-Heng-Fu, Lei-Zhi-Ping, Lin-Shi-Biao, Kang-Shi-Gang, Pai-Chun-Xiu. High temperature thermal extraction of Xianfeng lignite
and FT-IR characterization of its extracts and residues[J]. Journal of Fuel Chemistry and Technology, 2011, 39(06): 401-406.

High temperature thermal extraction of Xianfeng lignite
and FT-IR characterization of its extracts and residues

  • Received Date: 2010-10-14
  • Rev Recd Date: 2011-01-22
  • Publish Date: 2011-06-30
  • High-temperature thermal extraction (TE) of Xianfeng lignite by different solvents was carried out, and FT-IR spectra of extracts and residues were determined. The results indicate that Xianfeng lignite shows the macro-molecular network structure by chemical bond cross-linking, in which some low molecular compounds are associated by non-covalent interaction. The TE can distinctly increase the extraction yields, which are up to 20.7% and 21.3% at 300℃ in toluene and tetralin, respectively. The extracts result from the release of low molecular compounds by thermal rupture of non-covalent bonds at high temperature. Meanwhile, there is no obviously pyrolysis in the process of thermal extraction at 300℃. So the hydrogen donor solvent and hydrogen bond solvent can not increase the thermal extraction yield. The thermal extracts of Xianfeng lignite contain a great of aliphatic alkyl and carbonyl ester, a little of hydroxyl and aromatic structure. The solvent of thermal extraction shows distinctly influences on the constitution and structure of extracts.
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