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Peter A. Scholle

Publications and source records attributed to Peter A. Scholle.

10 recordsLinked to original sources

Thermal and cementation histories of Permian shelf-edge carbonate rocks in the Nanpanjiang Basin, South China

As of 1984, the Nanpanjiang Basin of South China has had almost no exploration by drilling although oil seeps exist among its margins and producing wells occur in adjacent basins. however, cooperative studies by petroleum geologists and geochemists of the United States and the People's Republic of China (1982-1984) show that calcite-cemented reef and fore-reef carbonate rocks near Ziyun contain bitumen in Upper Permian shelf-edge sediment. the cementation history consists of three episodes: (1)precipitation of syndepositional marine cement (formerly botryoidal aragonnite and fibrous magnesian calcite); (2)precipitation of post-depositional early cement (radiaxial calcite); and (3)precipitation of late burial cement (white calcite spar). Hydrocarbons were introduced into the rocks between cementation episodes 2 and 3. Fluid inclusion analysis of secondary inclusions in the burial cement indicates that the rocks were heated to nearly 200 C after hydrocarbon migration and cementation episode 3. Bitumen remains in the rocks as evidence of the earlier presence of liquid hydrocarbons. During this study, Ordovician through Permian carbonate rocks and Cambrian through Triassic clastic rocks were analyzed for total organic carbon (TOC) vitrinite reflectance (R 0 ), and extractable hydrocarbon (HC) content and composition. Within the basin, TOC values ranged from 0.02% to 3.91%, total HC ranged from 0.004 to 0.11 mg/g, and R 0 values were mostly greater than 2.0%. Previous studies by several groups of scientists in this region have found low TOC values and evidence of overmaturity. Our studies found higher TOC values, but otherwiese confirm the earlier findings. We conclude that portions of the basin have been heated beyond the level of liquid hydrocarbon generation and retention. Although our observations do not favor the occurrence of liquid hydrocarbons in the Paleozoic strata along the western maring of the basin, the possibility of significant gas accumulations in fractured reservoirs or of other hydrocarbon accumulations in the basin cannot be ruled out.

Nanpanjian Basin

Comparative geochemical and mineralogical studies of two cyclic transgressive pelagic limestone units, cretaceous Western Interior Basin, U.S.

Pelagic limestone units were deposited in the North American Western Interior seaway during two major Cretaceous transgressive episodes. The Bridge Creek Limestone Member of the Greenhorn Formation, deposited during the Late Cenomanian-Early Turonian transgression, and the Smoky Hill Member of the Niobrara Formation, deposited during the overall Early Coniacian-Early Campanian transgression, are both enriched in organic-carbon and exhibit smallscale carbonate cycles representing periodicities in the range 20 to 40 ky. The distinct periodicity and overall unusual depositional milieu of both units are reflected in their sedimentary structures, mineralogy, and geochemistry. The Bridge Creek Limestone at Pueblo, Colorado, averages 78% CaCO 3 and 1.75% organic carbon with ranges of 42-96% and 0.06-6.97%, respectively, across small-scale cycles. High concentrations of Al, Fe, Mg, K, Ti, Na, Cr, Ni, V; higher Sr/Ca and lower Si/Al ratios; and lighter δ 18 0 in CaCO 3 in dark-colored clay-rich beds all suggest periodic influx of terrestrial clay minerals during times of peak fresh water runoff from uplifted highlands to the west. Higher Sr/Ca ratios in marlstone beds than in limestone beds suggest that the marlstone beds have undergone less diagenetic removal of Sr. Higher concentrations of organic carbon, hydrogen, and sulfur, and preservation of some lamination in the clay-rich beds also suggest that the times of enhanced runoff may have induced stable salinity stratification in the water column, which led to gradual depletion of dissolved oxygen in the bottom waters and enhanced preservation of organic carbon in sediments. The geochemistry also suggests that a significant change in sedimentation occurred at the Cenomanian-Turonian boundary. The geochemical characteristics of the Niobrara Formation near Fort collins, Colorado, are very similar to those of the Bridge Creek Limestone at Pueblo, suggesting similar depositional conditions and source of clastic materials. However, the small scale cycles are present but more subdued in the Niobrara Formation than in the Bridge Creek Limestone, and the Niobrara Formation in the Fort Collins area has not been as altered by diagenesis.

SEPM Special Publication