Low-molecular-weight hydrocarbon concentrations, organic carbon contents, and Rock-Eval pyrolysis hydrogen indices at DSDP Holes 75-530A and 75-532


Autoria(s): Schaefer, Rainer G; Leythaeuser, Detlev
Cobertura

MEDIAN LATITUDE: -19.465600 * MEDIAN LONGITUDE: 9.952300 * SOUTH-BOUND LATITUDE: -19.743500 * WEST-BOUND LONGITUDE: 9.385800 * NORTH-BOUND LATITUDE: -19.187700 * EAST-BOUND LONGITUDE: 10.518800 * DATE/TIME START: 1980-07-29T00:00:00 * DATE/TIME END: 1980-08-20T00:00:00

Data(s)

16/04/1984

Resumo

A series of C2-C8 hydrocarbons (including saturated, aromatic, and olefinic compounds) from deep-frozen core samples taken during DSDP Leg 75 (Holes 530A and 532) were analyzed by a combined hydrogen-stripping/thermovaporization method. Concentrations representing both hydrocarbons dissolved in the pore water and adsorbed on the mineral surfaces vary in Hole 530A from about 10 to 15,000 ng/g of dry sediment weight depending on the lithology (organic-carbon-lean calcareous oozes versus "black shales"). Likewise, the organic-carbon-normalized C2-C8 hydrocarbon concentrations vary from 3,500 to 93,100 ng/g Corg, reflecting drastic differences in the hydrogen contents and hence the hydrocarbon potential of the kerogens. The highest concentrations measured of nearly 10**5 ng/g Corg are about two orders of magnitude below those usually encountered in Type-II kerogen-bearing source beds in the main phase of petroleum generation. Therefore, it was concluded that Hole 530A sediments, even at 1100 m depth, are in an early stage of evolution. The corresponding data from Hole 532 indicated lower amounts (3,000-9,000 ng/g Corg), which is in accordance with the shallow burial depth and immaturity of these Pliocene/late Miocene sediments. Significant changes in the light hydrocarbon composition with depth were attributed either to changes in kerogen type or to maturity related effects. Redistribution pheonomena, possibly the result of diffusion, were recognized only sporadically in Hole 530A, where several organic-carbon lean samples were enriched by migrated gaseous hydrocarbons. The core samples from Hole 530A were found to be severely contaminated by large quantities of acetone, which is routinely used as a solvent during sampling procedures on board Glomar Challenger.

Formato

application/zip, 2 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.810257

doi:10.1594/PANGAEA.810257

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Schaefer, Rainer G; Leythaeuser, Detlev (1984): C2-C8 hydrocarbons in sediments from Deep Sea Drilling Project Leg 75, Holes 530A, Angola Basin, and 532, Walvis Ridge. In: Hay, WW; Sibuet, J-C; et al. (eds.), Initial Reports of the Deep Sea Drilling Project (U.S. Govt. Printing Office), 75, 1055-1067, doi:10.2973/dsdp.proc.75.137.1984

Palavras-Chave #+1,1-Dimethylcyclopentane; +1-Butene; +2,2-Dimethylpentane; 1,cis-2-Dimethylcyclopentane per unit sediment mass; 1, cis-2 DMCP/sed; 1,cis-3-Dimethylcyclopentane per unit sediment mass; 1, cis-3 DMCP/sed; 1,trans-2,cis-3-trimethylcyclopentane per unit sediment mass; 1,trans-2,cis-4-trimethylcyclopentane per unit sediment mass; 1 trans-2-Dimethylcyclopentane per unit sediment mass; 1 trans-2 DMCP/sed; 1 trans-3-Dimethylcyclopentane per unit sediment mass; 1 trans-3 DMCP/sed; 2,2-Dimethylbutane per unit sediment mass; 2,2-Dimethylpropane per unit sediment mass; 2,2 DMB/sed; 2,2 DMP/sed; 2,3-Dimethylbutane per unit sediment mass; 2,3-Dimethylpentane per unit sediment mass; 2,3 DMB/sed; 2,3 DMP/sed; 2,4-Dimethylpentane per unit sediment mass; 2,4 DMP/sed; 2,5-Dimethylhexane per unit sediment mass; 2-Methylheptane per unit sediment mass; 2-Methylhexane per unit sediment mass; 2-Methylpentane per unit sediment mass; 3-Methylhexane/sed; 3-Methylhexane per unit sediment mass; 3-Methylpentane/sed; 3-Methylpentane per unit sediment mass; 75-530A; 75-532; Benzene per unit sediment mass; C2H4/sed; C2H6/sed; C3H6/sed; C3H8/sed; C5H10/sed; C6H14/sed; C6H5CH3/sed; C6H6/sed; C7H14/sed; C8H16/sed; C8H18/sed; Carbon, organic, total; Cis-2-butene per unit sediment mass; cis-C4H8/sed; Combined gas-stripping/thermovaporization method; Cyclohexane per unit sediment mass; Cyclopentane per unit sediment mass; Deep Sea Drilling Project; Depth; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; Element analyser CHN, LECO; Ethane per unit sediment mass; Ethene per unit sediment mass; Ethylcyclopentane per unit sediment mass; Glomar Challenger; HI, HC/TOC; Hydrogen index, mass HC per unit mass total organic carbon; i-C4H10/sed; i-C5H12/sed; i-C6H14/sed; i-C7H16/sed; Isobutane per unit sediment mass; Isopentane per unit sediment mass; Label; Leg75; mbsf; MCP/sed; Methylcyclohexane per unit sediment mass; Methylcyclopentane per unit sediment mass; n-Butane per unit sediment mass; n-C4H10/sed; n-C5H12/sed; n-C6H14/sed; n-C7/sed; n-C8/sed; n-Heptane per unit sediment mass; n-Hexane per unit sediment mass; n-Octane per unit sediment mass; n-Pentane per unit sediment mass; ODP sample designation; Propane per unit sediment mass; Propene per unit sediment mass; Rock eval pyrolysis (Espitalié et al. 1977); Sample code/label; South Atlantic; South Atlantic/RIDGE; TOC; Toluene per unit sediment mass; Trans-2-butene per unit sediment mass; trans-C4H8/sed
Tipo

Dataset