Global data compilation of benthic data sets II, supplement to: Seiter, Katherina; Hensen, Christian; Zabel, Matthias (2005): Benthic carbon mineralization on a global scale. Global Biogeochemical Cycles, 19, GB1010

In this study we present a global distribution pattern and budget of the minimum flux of particulate organic carbon to the sea floor (J POC alpha). The estimations are based on regionally specific correlations between the diffusive oxygen flux across the sediment-water interface, the total organic c...

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Main Authors: Seiter, Katherina, Hensen, Christian, Zabel, Matthias
Format: Article in Journal/Newspaper
Language:English
Published: PANGAEA - Data Publisher for Earth & Environmental Science 2005
Subjects:
T-3
M25
M51
M39
M57
M65
V15
V19
V22
V23
V25
V28
V29
V30
V32
V35
Online Access:https://dx.doi.org/10.1594/pangaea.733691
https://doi.pangaea.de/10.1594/PANGAEA.733691
id ftdatacite:10.1594/pangaea.733691
record_format openpolar
spelling ftdatacite:10.1594/pangaea.733691 2023-05-15T16:30:45+02:00 Global data compilation of benthic data sets II, supplement to: Seiter, Katherina; Hensen, Christian; Zabel, Matthias (2005): Benthic carbon mineralization on a global scale. Global Biogeochemical Cycles, 19, GB1010 Seiter, Katherina Hensen, Christian Zabel, Matthias 2005 application/zip https://dx.doi.org/10.1594/pangaea.733691 https://doi.pangaea.de/10.1594/PANGAEA.733691 en eng PANGAEA - Data Publisher for Earth & Environmental Science https://dx.doi.org/10.1029/2004gb002225 Creative Commons Attribution 3.0 Unported https://creativecommons.org/licenses/by/3.0/legalcode cc-by-3.0 CC-BY Box corer Trigger corer Composite Core Drilling/drill rig Piston corer Gravity corer MultiCorer Gravity corer Kiel type Box corer Reineck Kasten corer 15 cm Kasten corer Piston corer Kiel type Giant box corer Calypso Corer Soil combustion Multiple investigations Piston corer BGR type MiniCorer Leg75 Leg104 Leg105 Leg108 Leg112 Leg117 Leg151 Leg159 Leg167 Leg175 A150/180 AG-1994 MANOP CD92A CH7X EN06601 ERDC T-3 M6/6 M9/4 M12/1 M16/1 M16/2 M20/2 M23/3 M29/2 SO101 M34/1 M34/2 VA-05/4 VA-08/1 M25 M51 M39 M57 M65 ANT-IV/1c M6/5 M13/2 M2/2 M7/2 M7/5 M17/1 M17/2 M21/4 INMD KN11002 M2/1 M7/3 M26/2 MD38 APSARA4 MD101 NIOP-D2 PLDS PLTO POS137 POS142 ARK-I/3 ARK-II/5 ARK-III/3 ARK-IV/3 ARK-VI/2 ANT-VIII/3 ARK-VII/1 ANT-IX/4 ARK-VIII/2 ARK-VIII/3 ANT-X/5 ARK-IX/4 ANT-XI/2 ARK-XI/1 RC08 RC11 RC13 RC15 RC16 RC17 RC24 TT183 CEPAG NIOZ78 NIOZ80 TGT013 TTXXX V15 V19 V22 V23 V25 V28 V29 V30 V32 V33/4-14 V35 W8803B Y74-2 Glomar Challenger Joides Resolution Akademik Golitsyn Charles Darwin Jean Charcot Endeavor Eurydice Sampling/drilling ice Meteor 1986 Sonne Valdivia 1961 Meteor 1964 Polarstern Melville Knorr Marion Dufresne 1972 Marion Dufresne 1995 Tyro New Horizon Poseidon Robert Conrad Thomas G. Thompson Le Suroît Vema Wecoma Yaquina Center for Marine Environmental Sciences MARUM article Supplementary Collection of Datasets Collection 2005 ftdatacite https://doi.org/10.1594/pangaea.733691 https://doi.org/10.1029/2004gb002225 2022-02-09T12:04:35Z In this study we present a global distribution pattern and budget of the minimum flux of particulate organic carbon to the sea floor (J POC alpha). The estimations are based on regionally specific correlations between the diffusive oxygen flux across the sediment-water interface, the total organic carbon content in surface sediments, and the oxygen concentration in bottom waters. For this, we modified the principal equation of Cai and Reimers [1995] as a basic monod reaction rate, applied within 11 regions where in situ measurements of diffusive oxygen uptake exist. By application of the resulting transfer functions to other regions with similar sedimentary conditions and areal interpolation, we calculated a minimum global budget of particulate organic carbon that actually reaches the sea floor of ~0.5 GtC yr**-1 (>1000 m water depth (wd)), whereas approximately 0.002-0.12 GtC yr**-1 is buried in the sediments (0.01-0.4% of surface primary production). Despite the fact that our global budget is in good agreement with previous studies, we found conspicuous differences among the distribution patterns of primary production, calculations based on particle trap collections of the POC flux, and J POC alpha of this study. These deviations, especially located at the southeastern and southwestern Atlantic Ocean, the Greenland and Norwegian Sea and the entire equatorial Pacific Ocean, strongly indicate a considerable influence of lateral particle transport on the vertical link between surface waters and underlying sediments. This observation is supported by sediment trap data. Furthermore, local differences in the availability and quality of the organic matter as well as different transport mechanisms through the water column are discussed. Article in Journal/Newspaper Greenland Norwegian Sea DataCite Metadata Store (German National Library of Science and Technology) Norwegian Sea Greenland Pacific Charcot ENVELOPE(139.017,139.017,-69.367,-69.367)
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language English
topic Box corer
Trigger corer
Composite Core
Drilling/drill rig
Piston corer
Gravity corer
MultiCorer
Gravity corer Kiel type
Box corer Reineck
Kasten corer 15 cm
Kasten corer
Piston corer Kiel type
Giant box corer
Calypso Corer
Soil combustion
Multiple investigations
Piston corer BGR type
MiniCorer
Leg75
Leg104
Leg105
Leg108
Leg112
Leg117
Leg151
Leg159
Leg167
Leg175
A150/180
AG-1994
MANOP
CD92A
CH7X
EN06601
ERDC
T-3
M6/6
M9/4
M12/1
M16/1
M16/2
M20/2
M23/3
M29/2
SO101
M34/1
M34/2
VA-05/4
VA-08/1
M25
M51
M39
M57
M65
ANT-IV/1c
M6/5
M13/2
M2/2
M7/2
M7/5
M17/1
M17/2
M21/4
INMD
KN11002
M2/1
M7/3
M26/2
MD38
APSARA4
MD101
NIOP-D2
PLDS
PLTO
POS137
POS142
ARK-I/3
ARK-II/5
ARK-III/3
ARK-IV/3
ARK-VI/2
ANT-VIII/3
ARK-VII/1
ANT-IX/4
ARK-VIII/2
ARK-VIII/3
ANT-X/5
ARK-IX/4
ANT-XI/2
ARK-XI/1
RC08
RC11
RC13
RC15
RC16
RC17
RC24
TT183
CEPAG
NIOZ78
NIOZ80
TGT013
TTXXX
V15
V19
V22
V23
V25
V28
V29
V30
V32
V33/4-14
V35
W8803B
Y74-2
Glomar Challenger
Joides Resolution
Akademik Golitsyn
Charles Darwin
Jean Charcot
Endeavor
Eurydice
Sampling/drilling ice
Meteor 1986
Sonne
Valdivia 1961
Meteor 1964
Polarstern
Melville
Knorr
Marion Dufresne 1972
Marion Dufresne 1995
Tyro
New Horizon
Poseidon
Robert Conrad
Thomas G. Thompson
Le Suroît
Vema
Wecoma
Yaquina
Center for Marine Environmental Sciences MARUM
spellingShingle Box corer
Trigger corer
Composite Core
Drilling/drill rig
Piston corer
Gravity corer
MultiCorer
Gravity corer Kiel type
Box corer Reineck
Kasten corer 15 cm
Kasten corer
Piston corer Kiel type
Giant box corer
Calypso Corer
Soil combustion
Multiple investigations
Piston corer BGR type
MiniCorer
Leg75
Leg104
Leg105
Leg108
Leg112
Leg117
Leg151
Leg159
Leg167
Leg175
A150/180
AG-1994
MANOP
CD92A
CH7X
EN06601
ERDC
T-3
M6/6
M9/4
M12/1
M16/1
M16/2
M20/2
M23/3
M29/2
SO101
M34/1
M34/2
VA-05/4
VA-08/1
M25
M51
M39
M57
M65
ANT-IV/1c
M6/5
M13/2
M2/2
M7/2
M7/5
M17/1
M17/2
M21/4
INMD
KN11002
M2/1
M7/3
M26/2
MD38
APSARA4
MD101
NIOP-D2
PLDS
PLTO
POS137
POS142
ARK-I/3
ARK-II/5
ARK-III/3
ARK-IV/3
ARK-VI/2
ANT-VIII/3
ARK-VII/1
ANT-IX/4
ARK-VIII/2
ARK-VIII/3
ANT-X/5
ARK-IX/4
ANT-XI/2
ARK-XI/1
RC08
RC11
RC13
RC15
RC16
RC17
RC24
TT183
CEPAG
NIOZ78
NIOZ80
TGT013
TTXXX
V15
V19
V22
V23
V25
V28
V29
V30
V32
V33/4-14
V35
W8803B
Y74-2
Glomar Challenger
Joides Resolution
Akademik Golitsyn
Charles Darwin
Jean Charcot
Endeavor
Eurydice
Sampling/drilling ice
Meteor 1986
Sonne
Valdivia 1961
Meteor 1964
Polarstern
Melville
Knorr
Marion Dufresne 1972
Marion Dufresne 1995
Tyro
New Horizon
Poseidon
Robert Conrad
Thomas G. Thompson
Le Suroît
Vema
Wecoma
Yaquina
Center for Marine Environmental Sciences MARUM
Seiter, Katherina
Hensen, Christian
Zabel, Matthias
Global data compilation of benthic data sets II, supplement to: Seiter, Katherina; Hensen, Christian; Zabel, Matthias (2005): Benthic carbon mineralization on a global scale. Global Biogeochemical Cycles, 19, GB1010
topic_facet Box corer
Trigger corer
Composite Core
Drilling/drill rig
Piston corer
Gravity corer
MultiCorer
Gravity corer Kiel type
Box corer Reineck
Kasten corer 15 cm
Kasten corer
Piston corer Kiel type
Giant box corer
Calypso Corer
Soil combustion
Multiple investigations
Piston corer BGR type
MiniCorer
Leg75
Leg104
Leg105
Leg108
Leg112
Leg117
Leg151
Leg159
Leg167
Leg175
A150/180
AG-1994
MANOP
CD92A
CH7X
EN06601
ERDC
T-3
M6/6
M9/4
M12/1
M16/1
M16/2
M20/2
M23/3
M29/2
SO101
M34/1
M34/2
VA-05/4
VA-08/1
M25
M51
M39
M57
M65
ANT-IV/1c
M6/5
M13/2
M2/2
M7/2
M7/5
M17/1
M17/2
M21/4
INMD
KN11002
M2/1
M7/3
M26/2
MD38
APSARA4
MD101
NIOP-D2
PLDS
PLTO
POS137
POS142
ARK-I/3
ARK-II/5
ARK-III/3
ARK-IV/3
ARK-VI/2
ANT-VIII/3
ARK-VII/1
ANT-IX/4
ARK-VIII/2
ARK-VIII/3
ANT-X/5
ARK-IX/4
ANT-XI/2
ARK-XI/1
RC08
RC11
RC13
RC15
RC16
RC17
RC24
TT183
CEPAG
NIOZ78
NIOZ80
TGT013
TTXXX
V15
V19
V22
V23
V25
V28
V29
V30
V32
V33/4-14
V35
W8803B
Y74-2
Glomar Challenger
Joides Resolution
Akademik Golitsyn
Charles Darwin
Jean Charcot
Endeavor
Eurydice
Sampling/drilling ice
Meteor 1986
Sonne
Valdivia 1961
Meteor 1964
Polarstern
Melville
Knorr
Marion Dufresne 1972
Marion Dufresne 1995
Tyro
New Horizon
Poseidon
Robert Conrad
Thomas G. Thompson
Le Suroît
Vema
Wecoma
Yaquina
Center for Marine Environmental Sciences MARUM
description In this study we present a global distribution pattern and budget of the minimum flux of particulate organic carbon to the sea floor (J POC alpha). The estimations are based on regionally specific correlations between the diffusive oxygen flux across the sediment-water interface, the total organic carbon content in surface sediments, and the oxygen concentration in bottom waters. For this, we modified the principal equation of Cai and Reimers [1995] as a basic monod reaction rate, applied within 11 regions where in situ measurements of diffusive oxygen uptake exist. By application of the resulting transfer functions to other regions with similar sedimentary conditions and areal interpolation, we calculated a minimum global budget of particulate organic carbon that actually reaches the sea floor of ~0.5 GtC yr**-1 (>1000 m water depth (wd)), whereas approximately 0.002-0.12 GtC yr**-1 is buried in the sediments (0.01-0.4% of surface primary production). Despite the fact that our global budget is in good agreement with previous studies, we found conspicuous differences among the distribution patterns of primary production, calculations based on particle trap collections of the POC flux, and J POC alpha of this study. These deviations, especially located at the southeastern and southwestern Atlantic Ocean, the Greenland and Norwegian Sea and the entire equatorial Pacific Ocean, strongly indicate a considerable influence of lateral particle transport on the vertical link between surface waters and underlying sediments. This observation is supported by sediment trap data. Furthermore, local differences in the availability and quality of the organic matter as well as different transport mechanisms through the water column are discussed.
format Article in Journal/Newspaper
author Seiter, Katherina
Hensen, Christian
Zabel, Matthias
author_facet Seiter, Katherina
Hensen, Christian
Zabel, Matthias
author_sort Seiter, Katherina
title Global data compilation of benthic data sets II, supplement to: Seiter, Katherina; Hensen, Christian; Zabel, Matthias (2005): Benthic carbon mineralization on a global scale. Global Biogeochemical Cycles, 19, GB1010
title_short Global data compilation of benthic data sets II, supplement to: Seiter, Katherina; Hensen, Christian; Zabel, Matthias (2005): Benthic carbon mineralization on a global scale. Global Biogeochemical Cycles, 19, GB1010
title_full Global data compilation of benthic data sets II, supplement to: Seiter, Katherina; Hensen, Christian; Zabel, Matthias (2005): Benthic carbon mineralization on a global scale. Global Biogeochemical Cycles, 19, GB1010
title_fullStr Global data compilation of benthic data sets II, supplement to: Seiter, Katherina; Hensen, Christian; Zabel, Matthias (2005): Benthic carbon mineralization on a global scale. Global Biogeochemical Cycles, 19, GB1010
title_full_unstemmed Global data compilation of benthic data sets II, supplement to: Seiter, Katherina; Hensen, Christian; Zabel, Matthias (2005): Benthic carbon mineralization on a global scale. Global Biogeochemical Cycles, 19, GB1010
title_sort global data compilation of benthic data sets ii, supplement to: seiter, katherina; hensen, christian; zabel, matthias (2005): benthic carbon mineralization on a global scale. global biogeochemical cycles, 19, gb1010
publisher PANGAEA - Data Publisher for Earth & Environmental Science
publishDate 2005
url https://dx.doi.org/10.1594/pangaea.733691
https://doi.pangaea.de/10.1594/PANGAEA.733691
long_lat ENVELOPE(139.017,139.017,-69.367,-69.367)
geographic Norwegian Sea
Greenland
Pacific
Charcot
geographic_facet Norwegian Sea
Greenland
Pacific
Charcot
genre Greenland
Norwegian Sea
genre_facet Greenland
Norwegian Sea
op_relation https://dx.doi.org/10.1029/2004gb002225
op_rights Creative Commons Attribution 3.0 Unported
https://creativecommons.org/licenses/by/3.0/legalcode
cc-by-3.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.1594/pangaea.733691
https://doi.org/10.1029/2004gb002225
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