(Table 1) Development of pressure inside LTC 3 during 57 days

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Main Authors: Abegg, Friedrich, Hohnberg, Hans-Jürgen, Pape, Thomas, Bohrmann, Gerhard, Freitag, Johannes
Format: Dataset Open Access
Language:en
Published: PANGAEA 2008
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author Abegg, Friedrich
Hohnberg, Hans-Jürgen
Pape, Thomas
Bohrmann, Gerhard
Freitag, Johannes
author_facet Abegg, Friedrich
Hohnberg, Hans-Jürgen
Pape, Thomas
Bohrmann, Gerhard
Freitag, Johannes
collection Datos científicos de ciencias marinas y ambientales
contents Free or hydrate-bound gas in the seafloor has been of scientific, ecologic and economic interest for many years because it predominantly contains high concentrations of low-molecular-weight hydrocarbons. A prerequisite of accurate quantifications of gases in sediments is to preserve pressure and temperature close to the in situ conditions during recovery. Here we introduce two new sediment coring devices that allow for the recovery of near-surface gas- and gas-hydrate-bearing sediments and subsequent investigations using several different techniques such as visualisation by computerized tomography, quantitative degassing, and sediment and porewater analyses. The first coring tool, the Multiple Autoclave Corer (MAC), resembles a standard multiple corer in terms of applications, size and core length of about 55 cm. The second tool, the Dynamic Autoclave Piston Corer (DAPC), is similar to a piston corer in application and size and enables one to take cores of up to 2.5 m length. Both focus on the investigation of near-surface sediments, which are most strongly affected by changes in bottom-water temperature and hydrostatic pressure, which in turn influence continental slope stability. Some results from recent offshore applications show the potential of these tools.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_771218
institution PANGAEA
language en
publishDate 2008
publisher PANGAEA
record_format pangaea
spellingShingle (Table 1) Development of pressure inside LTC 3 during 57 days
Abegg, Friedrich
Hohnberg, Hans-Jürgen
Pape, Thomas
Bohrmann, Gerhard
Freitag, Johannes
229TV-MAC-8; Center for Marine Environmental Sciences; MARUM; Optical pressure gauge; OTEGA I; Pressure; SO165/2; SO165/2_229; Sonne; Television Multi-Autoklave corer; TV-MAC
Free or hydrate-bound gas in the seafloor has been of scientific, ecologic and economic interest for many years because it predominantly contains high concentrations of low-molecular-weight hydrocarbons. A prerequisite of accurate quantifications of gases in sediments is to preserve pressure and temperature close to the in situ conditions during recovery. Here we introduce two new sediment coring devices that allow for the recovery of near-surface gas- and gas-hydrate-bearing sediments and subsequent investigations using several different techniques such as visualisation by computerized tomography, quantitative degassing, and sediment and porewater analyses. The first coring tool, the Multiple Autoclave Corer (MAC), resembles a standard multiple corer in terms of applications, size and core length of about 55 cm. The second tool, the Dynamic Autoclave Piston Corer (DAPC), is similar to a piston corer in application and size and enables one to take cores of up to 2.5 m length. Both focus on the investigation of near-surface sediments, which are most strongly affected by changes in bottom-water temperature and hydrostatic pressure, which in turn influence continental slope stability. Some results from recent offshore applications show the potential of these tools.
title (Table 1) Development of pressure inside LTC 3 during 57 days
topic 229TV-MAC-8; Center for Marine Environmental Sciences; MARUM; Optical pressure gauge; OTEGA I; Pressure; SO165/2; SO165/2_229; Sonne; Television Multi-Autoklave corer; TV-MAC
url https://doi.org/10.1594/PANGAEA.771218