CARBONATE REPLACEMENT OF LACUSTRINE GYPSUM DEPOSITS IN 2 NEOGENE CONTINENTAL BASINS, EASTERN SPAIN

被引:51
作者
ANADON, P
ROSELL, L
TALBOT, MR
机构
[1] UNIV BERGEN,GEOL INST AVD A,ALLEGT 41,N-5007 BERGEN,NORWAY
[2] CSIC,INST GEOL JAUME ALMERA,E-08028 BARCELONA,SPAIN
[3] UNIV BARCELONA,FAC GEOL,DEPT GEOQUIM PETROL & PROSP GEOL,E-08028 BARCELONA,SPAIN
关键词
D O I
10.1016/0037-0738(92)90020-R
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
Bedded nonmarine gypsum deposits in the Miocene Teruel and Cabriel basins, eastern Spain, are partly replaced by carbonate. The Libros gypsum (Teruel Graben) is associated with fossiliferous carbonate wackestones and finely laminated, organic matter-rich mudstones which accumulated under anoxic conditions in a meromictic, permanent lake. The gypsum is locally pseudomorphed by aragonite or, less commonly, replaced by calcite. Low delta-C-13 values indicate that sulphate replacement resulted from bacterial sulphate reduction processes that were favoured by anaerobic conditions and abundant labile organic matter in the sediments. Petrographic evidence and oxygen isotopic composition suggest that gypsum replacement by aragonite occurred soon after deposition. A subsequent return to oxidising conditions caused some aragonite to be replaced by diagenetic gypsum. Native sulphur is associated with some of these secondary gypsum occurrences. The Los Ruices sulphate deposits (Cabriel Basin) contain beds of clastic and selenitic gypsum which are associated with limestones and red beds indicating accumulation in a shallow lake. Calcite is the principal replacement mineral. Bacterial sulphate reduction was insignificant in this basin because of a scarcity of organic matter. Stable isotope composition of diagenetic carbonate indicates that gypsum replacement occurred at shallow burial depths due to contact with dilute groundwaters of meteoric origin. Depositional environment evidently has a major influence upon the diagenetic history of primary sulphate deposits. The quantity of preserved organic matter degradable by sulphate-reducing bacteria is of particular importance and, along with groundwater composition, is the main factor controlling the mechanism of gypsum replacement by carbonate.
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页码:201 / 216
页数:16
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