--> ABSTRACT: Quartz Cementation History of the Heidelberg Sandstone, Germany: In Situ Microanalysis of δ18O, by French, Marsha; Worden, Richard H.; Mariani, Elisabetta; King, Hubert E.; Lamberti, William A.; Horn, William C.; #90142 (2012)
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Previous HitQuartzNext Hit Cementation History of the Heidelberg Sandstone, Germany: In Situ Microanalysis of δ18O

French, Marsha *1; Worden, Richard H.2; Mariani, Elisabetta 2; King, Hubert E.3; Lamberti, William A.3; Horn, William C.3
(1) ExxonMobil Upstream Research C, Houston, TX.
(2) School of Environmental Sciences, University of Liverpool, Liverpool, United Kingdom.
(3) ExxonMobil Research and Engineering Company, Annandale, NJ.

Abstract - Microcrystalline Previous HitquartzNext Hit prevents the growth of ordinary Previous HitquartzNext Hit cements and leads to anomalously high porosity in deeply buried petroleum reservoirs. Oxygen isotope analysis of microcrystalline Previous HitquartzNext Hit and other Previous HitquartzNext Hit cements provide data to help understand the growth mechanisms for porosity preserving microcrystalline Previous HitquartzNext Hit. High precision, in situ oxygen isotope analyses of Cretaceous Heidelberg Formation detrital grains and Previous HitquartzNext Hit cements show three varieties of authigenic Previous HitquartzNext Hit cement growing on detrital Previous HitquartzNext Hit grains. This micron-scale data provides evidence that: 1) porosity preserving microcrystalline Previous HitquartzNext Hit forms on a chalcedony substrate and 2) that there were two episodes of fluid influx into the Heidelberg Formation. Detrital Previous HitquartzNext Hit has an average δ18O composition of +9.40/00 and mesoquartz (syntaxial overgrowth) has an average composition of +19.30/00, microcrystalline Previous HitquartzNext Hit has an average composition of 21.70/00. Estimates of the δ18O composition of chalcedonic Previous HitquartzNext Hit are complicated by the problem of isolating the microcrystalline Previous HitquartzNext Hit from the chalcedony; mixtures of the two give a consistently higher δ18O (27.40/00) than microcrystalline Previous HitquartzNext Hit. From oxygen isotope data, the formation of microcrystalline Previous HitquartzNext Hit and chalcedonic Previous HitquartzNext Hit is interpreted to have taken place in a small temperature range of between 80 and 1400C. Wavelength dispersive spectroscopy (WDS) data supports the paragenetic data and suggests that two episodes of enrichment in aluminum and iron in the microcrystalline Previous HitquartzTop and chalcedony. These two distinct layers formed from two episodes of highly concentrated brines, emanating from a hydrothermal source associated with nearby faulting in the Harz Mountains mining district, Germany.

 

AAPG Search and Discovery Article #90142 © 2012 AAPG Annual Convention and Exhibition, April 22-25, 2012, Long Beach, California