(Appendix 1-4) Geochemistry, desorption methods, TOC, TC, and mineral content of different settings


Autoria(s): Ertefai, Tobias F; Heuer, Verena B; Prieto-Mollar, Xavier; Vogt, Christoph; Sylva, Sean P; Seewald, Jeffrey S; Hinrichs, Kai-Uwe
Cobertura

MEDIAN LATITUDE: 37.748656 * MEDIAN LONGITUDE: 109.519359 * SOUTH-BOUND LATITUDE: -12.020510 * WEST-BOUND LONGITUDE: 14.726600 * NORTH-BOUND LATITUDE: 72.005700 * EAST-BOUND LONGITUDE: -81.903980 * DATE/TIME START: 2002-03-22T15:00:00 * DATE/TIME END: 2007-10-22T09:30:00

Data(s)

19/10/2010

Resumo

Sorption of volatile hydrocarbon gases (VHCs) to marine sediments is a recognized phenomenon that has been investigated in the context of petroleum exploration. However, little is known about the biogeochemistry of sorbed methane and higher VHCs in environments that are not influenced by thermogenic processes. This study evaluated two different extraction protocols for sorbed VHCs, used high pressure equipment to investigate the sorption of methane to pure clay mineral phases, and conducted a geochemical and mineralogical survey of sediment samples from different oceanographic settings and geochemical regimes that are not significantly influenced by thermogenic gas. Extraction of sediments under alkaline conditions yielded higher concentrations of sorbed methane than the established protocol for acidic extraction. Application of alkaline extraction in the environmental survey revealed the presence of substantial amounts of sorbed methane in 374 out of 411 samples (91%). Particularly high amounts, up to 2.1 mmol kg**-1 dry sediment, were recovered from methanogenic sediments. Carbon isotopic compositions of sorbed methane suggested substantial contributions from biogenic sources, both in sulfate-depleted and sulfate-reducing sediments. Carbon isotopic relationships between sorbed and dissolved methane indicate a coupling of the two pools. While our sorption experiments and extraction conditions point to an important role for clay minerals as sorbents, mineralogical analyses of marine sediments suggest that variations in mineral composition are not controlling variations in quantities of sorbed methane. We conclude that the distribution of sorbed methane in sediments is strongly influenced by in situ production.

Formato

application/zip, 4 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.746477

doi:10.1594/PANGAEA.746477

Idioma(s)

en

Publicador

PANGAEA

Relação

Ertefai, Tobias F (2009): The biogeochemical significance of gaseous hydrocarbons sorbed to marine sediments (Die biogeochemische Signifikanz von sorbierten Kohlenwasserstoffgasen in marinen Sedimenten). PhD Thesis, Elektronische Dissertationen an der Staats- und Universitätsbibliothek Bremen, Germany, urn:nbn:de:gbv:46-diss000114192

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Ertefai, Tobias F; Heuer, Verena B; Prieto-Mollar, Xavier; Vogt, Christoph; Sylva, Sean P; Seewald, Jeffrey S; Hinrichs, Kai-Uwe (2010): The biogeochemistry of sorbed methane in marine sediments. Geochimica et Cosmochimica Acta, 74, 6033-6048, doi:10.1016/j.gca.2010.08.006

Palavras-Chave #151; 16; 19; 201-1231E; 301-U1301C; 311-U1326D; 6K954CR/CG; 6K955CR; 6K957CY; 6K958CG; Ank; Ankerite; Ap; Apatite; Aragonite; Arg; ARK-XXII/1b; Barite; Batumi seep area; Biotite; Brt; BS340G; BS341G; BS344G; BS345GR; BS346GR; BS349G; BS350G; BS351DAPC; BS352G; BS356G; BS359DAPC; BS362G; BS363G; Bt; Cal; Cal/dol; Calcite; Calcite/Dolomite ratio; Carbon, organic, total; Carbon, total; Cascadia Margin Gas Hydrates; Center for Marine Environmental Sciences; Chapopote; Chl; Chlorite; Chloritoid; Cld; Clinopyroxene; Comment; Cpx; Cristobalite; Crs; d13C C2H6; d13C C3H8; d13C CH4; DAPC; dD CH4; delta 13C, ethane; delta 13C, methane; delta 13C, propane; delta D dissolved CH4; delta Deuterium, methane; delta D sorbed CH4; Depth; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Depth bot; Depth top; dissolved; dissolved delta 13C, dissolved and sorbed gases were extracted with 1 N NaOH solution and accumulated together in the headspace; dissolved delta 13C, methane; dissolved delta 13C, methane, dissolved and sorbed gases were extracted with 1 N NaOH solution and accumulated together in the headspace; Dive84; Dol; Dolgovskoy mound; Dolomite; DRILL; Drilling/drill rig; Dvurechenskii; Dvurechenskii mud vulcano; Dynamic autoclave piston corer; Element analyser CS, LECO CS-200; Ep; Epidote; Error (rel%) ?; Error (rel%) +-1; Error (rel%) +-2; Error (rel%) +-2-3; Error (rel%) +-2-5; Error (rel%) +-5-10; Event; Exp301; Exp311; Fe3O4; GC; GC_T; GeoB10606; GeoB10607; GeoB10610; GeoB10624-1; GeoB10625; GeoB12210-6; GeoB9903-1; GeoB9903-2; GeoB9906-3; GeoB9906-4; GeoB9908-1; GeoB9908-4; GeoB9909-1; GeoB9909-2; GeoB9909-3; GeoB9913-2; GeoB9913-5; GeoB9915-2; GeoB9916-1; Glauconite; Glt; Gravity corer; Gravity Corer/temperature probe; High magnesium calcite; HMC; Iberia mound; Ill; Ill10Å/Mica5Å; Illite; Illite 10Å/Micas 5Å, ratio of integrated intensities; Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP; Japan Trench, seep site 1; Japan Trench, seep site 2; Joides Resolution; Juan de Fuca Hydrogeology; Juan de Fuca Ridge, North Pacific Ocean; Kalifeldspar; Kalifeldspar/Plagioclase ratio; Kaolinite; Kaolinite (3.56-3.58Å)/Chlorite (3.50-3.54Å), ratio of integrated intensities; Kfs; Kfs/Pl; Kln; Kln (3.56-3.58Å )/Chl (3.50-3.54Å); Label; Leg201; M67/2b; M72/2; M72/2_310; M72/2_314; M72/2_319_PUC-3; M74/2; Magnetite; MARUM; Mass spectrometer Finnigan Delta Plus XL; Meteor (1986); Mg-rich Calcite, Error (rel%) +-2-3; Mixed layer clay minerals; Mix layer; Mnt; Montmorillonite; More than 100 is possible as all single wt. % are mean values of up to 6 runs of the QUAX software per sample; Ms; Multicorer with television; Muscovite; NaCl; Norwegian Sea; Oil Ridge; Opx; Orthopyroxene; Pechori Mound; Petroleum mound; Pl; Plagioclase; Polarstern; Professor Logachev; PS70; PS70/075-1; PUC; Push corer; Py; Pyrite, FeS2; Quartz; Quartz/Feldspar ratio; Quartz/Phyllosillicates ratio; Quartz/Phyllosillicates Ratio based on wt. %; Qz; Qz/Fsp; Qz/Phyllos; Ratio of the integrated intensities of calcite 3.035 Å and dolomite 2.889 Å; Ratio of the integrated intensities of illite/micas 10 Å and 5 Å; Ratio of the integrated intensities of kaolinite 3.56- 3.58 Å and chlorite 3.50- 3.54 Å; Ratio of the integrated intensities of K-feldspar 3.24 Å and plagioclase 3.19 Å; Ratio of the integrated Intensity of the Quartz 4.26 Ångstroem (Å) and the sum of integrated intensities of Kfeldspar 3.24 Å and plagioclase 3.19 Å; Remote operated vehicle; ROV; Sample code/label; Sd/Mgs; Siderite/Magnesite ratio; Silicon dioxide; SiO2; SiO2 nearly amorphous (Opal,Glas), Error (rel%) +-5-10; SL-3; SL-6; SL-9; Sme; Smectite; Sodium chloride; sorbed; sorbed, extracted with 1 N NaOH solution in 20 ml glass vials crimp sealed with silicon or butyl rubber stoppers (cooked in); sorbed C2H6; sorbed C3H8; sorbed delta 13C, dissolved and sorbed gases were extracted with 1 N NaOH solution and accumulated together in the headspace; sorbed delta 13C, methane; sorbed delta 13C, methane, dissolved and sorbed gases were extracted with 1 N NaOH solution and accumulated together in the headspace; South Pacific Ocean; Spinel; Spl; Standard deviation; Standard deviation: sorbed delta 13C, methane; Std dev; Sum; Sum Amphibols Cordierite, Error (rel%) +-2-5; Sum Carbonates; Sum Fe-Oxides Fe-Hydroxides, Manganit, Error (rel%) +-5-10; Sum Garnet Olivine Corundum, Error (rel%) +-2-5; Sum Gypsum Anhydrite Jarosites, Error (rel%) +-2-5; Sum Illites & Micas, Error (rel%) +-5; Sum Montmorillonites & Smectites, Error (rel%) +-5; Sum Phyllosillicates, Error (rel%) +-5; Sum Rutile, Anatas, Error (rel%) +-2-5; Sum Serpentinite Talc, Error (rel%) +-2-5; Sum Sillimanite Andalusite, Error (rel%) +-2-5; TC; Television-Grab; TOC; Trd; Tridymite; TTR15; TVG; TVMUC; TV-MUC-1; Vivianite; X-ray diffraction (XRD); YK06-05; Yokosuka; Zeo; Zeolite; Zircon; Zrn
Tipo

Dataset