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author Kneuker, Tilo
Mann, Thomas
Dohrmann, Reiner
Ufer, Kristian
Blumenberg, Martin
Erbacher, Jochen
Bornemann, André
Schuck, Bernhard
Zimmerli, Géraldine Nicole
Pollok, Lukas
author_facet Kneuker, Tilo
Mann, Thomas
Dohrmann, Reiner
Ufer, Kristian
Blumenberg, Martin
Erbacher, Jochen
Bornemann, André
Schuck, Bernhard
Zimmerli, Géraldine Nicole
Pollok, Lukas
collection Datos científicos de ciencias marinas y ambientales
contents The total carbon (TC), total organic carbon (TOC), and total sulfur (TS) were determined using a LECO CS-230 system (Laboratory Equipment Corporation). Samples were heated up to 2000 °C under an oxygen atmosphere and an infrared detector subsequently measured the amount of produced CO₂ and SO₂. TOC was measured the same way after removing inorganic carbonates using 10 % HCl solution at 80 °C. Rock-Eval Pyrolyses were performed on a Rock-Eval-6 analyser (Vinci Technologies) using up to 180 mg initial sample material and a standard program (Espitalié et al., 1977; Lafargue et al., 1998), starting isothermal with 300°C for 3 min, succeeded by a heating rate of 25°C/min up to 650°C. Standard deviations for hydrogen indices (HI) and Tmax values are ± 5 % and ± 2°C, respectively.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_987520
institution PANGAEA
language en
publishDate 2026
publisher PANGAEA
record_format pangaea
spellingShingle Organic parameters obtained from Metzingen core
Kneuker, Tilo
Mann, Thomas
Dohrmann, Reiner
Ufer, Kristian
Blumenberg, Martin
Erbacher, Jochen
Bornemann, André
Schuck, Bernhard
Zimmerli, Géraldine Nicole
Pollok, Lukas
Baden-Württemberg; Calculated; Carbon, inorganic, total; Carbon, organic, total; Carbon, total; Carbon dioxide yield, S3, per unit sediment mass; Carbon dioxide yield, S3/Hydrocarbon yield, S2; cation exchange capacity; Clay formation; clay mineral; Claystone; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Element Analyser CS, LECO CS 230; Event label; Hydrocarbon yield, S1, per unit sediment mass; Hydrocarbon yield, S2, per unit sediment mass; Hydrogen index, mass HC, per unit mass total organic carbon; mineralogy; Opalinus Clay; Organic and inorganic carbon concentrations; Oxygen index, mass CO2, per unit mass total organic carbon; Production index, S1/(S1+S2); Pyrolysis temperature maximum; rock eval; Rock-Eval 6 (Vinci Technologies); Sample code/label; SEPIA-Metzingen; Sulfur, total; Swabian Alb; whole-rock mineralogy
The total carbon (TC), total organic carbon (TOC), and total sulfur (TS) were determined using a LECO CS-230 system (Laboratory Equipment Corporation). Samples were heated up to 2000 °C under an oxygen atmosphere and an infrared detector subsequently measured the amount of produced CO₂ and SO₂. TOC was measured the same way after removing inorganic carbonates using 10 % HCl solution at 80 °C. Rock-Eval Pyrolyses were performed on a Rock-Eval-6 analyser (Vinci Technologies) using up to 180 mg initial sample material and a standard program (Espitalié et al., 1977; Lafargue et al., 1998), starting isothermal with 300°C for 3 min, succeeded by a heating rate of 25°C/min up to 650°C. Standard deviations for hydrogen indices (HI) and Tmax values are ± 5 % and ± 2°C, respectively.
title Organic parameters obtained from Metzingen core
topic Baden-Württemberg; Calculated; Carbon, inorganic, total; Carbon, organic, total; Carbon, total; Carbon dioxide yield, S3, per unit sediment mass; Carbon dioxide yield, S3/Hydrocarbon yield, S2; cation exchange capacity; Clay formation; clay mineral; Claystone; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Element Analyser CS, LECO CS 230; Event label; Hydrocarbon yield, S1, per unit sediment mass; Hydrocarbon yield, S2, per unit sediment mass; Hydrogen index, mass HC, per unit mass total organic carbon; mineralogy; Opalinus Clay; Organic and inorganic carbon concentrations; Oxygen index, mass CO2, per unit mass total organic carbon; Production index, S1/(S1+S2); Pyrolysis temperature maximum; rock eval; Rock-Eval 6 (Vinci Technologies); Sample code/label; SEPIA-Metzingen; Sulfur, total; Swabian Alb; whole-rock mineralogy
url https://doi.org/10.1594/PANGAEA.987520