Organic sulphur in macromolecular sedimentary organic matter : I. Structure and origin of sulphur-containing moieties in kerogen, asphaltene and coal as revealed by flash pyrolysis
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Publication date
1989
Authors
Sinninghe Damsté, J.S.
Eglinton, T.I.
Leeuw, J.W. de
Schenk, P.A.
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Abstract
The distributions of sulphur-containing compounds generated by flash pyrolysis of macromolecular sedimentary
organic matter (kerogen, coal, asphaltenes) were studied by gas chromatography in combination with S-selective
flame photometric detection or mass spectrometry. The abundance of S-containing pyrolysis products in the
pyrolysates relative to other products was highly variable depending on the sample but the types of products were
generally similar, being mainly composed of "gaseous" compounds (e. g. , hydrogen sulphide) and low molecular weight
alkylthiophenes and alkylbenzothiophenes. The distribution patterns of the alkylated thiophenes were dominated by
a limited number of all theoretically possible isomers. The alkyl substitution patterns of the dominant isomers bear a
strong similarity to those of the organic S compounds present in the GC-amenable fractions of bitumens and immature
oils. Therefore, it is suggested that these S-containing pyrolysis products are formed by pyrolysis of related thiophenic
and benzothiophenic moieties present in the macromolecular sedimentary substances. Specific examples include those
with linear alkyl, iso and anteiso alkyl, isoprenoid alkyl and steroidal carbon skeletons. The presence of higher molecular
weight alkylthiophenes and alkylbenzothiophenes with these same carbon skeletons in pyrolysates of S-rich kerogens
provided further evidence for the presence of these S-containing moieties. It is likely that these moieties have been
formed by abiogenic S incorporation into sedimentary organic matter during early diagenesis.