NOVEL TRITERPENE-DERIVED HYDROCARBONS OF THE ARBORANE FERNANE SERIES IN SEDIMENTS .2.

被引:55
作者
HAUKE, V
GRAFF, R
WEHRUNG, P
TRENDEL, JM
ALBRECHT, P
RIVA, A
HOPFGARTNER, G
GULACAR, FO
BUCHS, A
EAKIN, PA
机构
[1] UNIV STRASBOURG 1,FAC CHIM,1 RUE BLAISE PASCAL,F-67070 STRASBOURG,FRANCE
[2] AGIP SPA,I-20097 SAN DONATO MILANE,ITALY
[3] UNIV GENEVA,SPECTROMETRIE MASSE LAB,CH-1211 GENEVA 4,SWITZERLAND
[4] VG ISOTECH,MIDDLEWICH CW10 0HT,CHESHIRE,ENGLAND
关键词
D O I
10.1016/0016-7037(92)90405-8
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Two ring-B aromatized triterpenes related to the arborane/fernane series were isolated from an Italian Triassic black shale (4 and 7) and a French Jurassic laminated bituminous limestone (7). They were identified by MS and NMR spectroscopy. These compounds, 25-norferna-5,7,9-triene 7 (C29) and 22,25,29,30-tetranor-18beta-ferna-5,7,9-triene 4 (C26), in the case of the Italian sediment, belong to a family which extends to at least C32 as shown by GC-MS. The presence of higher homologs and ring-A methylated structures in the Italian Triassic shale is analogous with the hopane series, which together with carbon isotopic data obtained by gas chromatography-isotope ratio mass spectrometry (GC-IRMS), strongly support a bacterial origin for most of these compounds. This suggests that 4 and 7 may result from a yet unrecognized rearrangement of sedimentary hopenes which have subsequently undergone ring-B aromatization. As an alternative, the C29 compound 7 could arise from C30 precursors not necessarily of bacterial origin (fernenes?). This hypothesis would apply particularly to the case of the Jurassic limestone, which does not show any trace of 4 nor of compounds with an extended side chain or a methyl group on ring A. Related structures also bearing an isopropyl group could derive by microbiological transformations from the corresponding fernen-3beta-ols or isoarborinol as can be deduced from the occurrence of ring-A degraded monoaromatic hydrocarbons 3 and 5.
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页码:3595 / 3602
页数:8
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