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Zhabina, Nina N; Demidova, Tatyana P; Volkov, Igor I (1983): Sulfur speciation in bottom sediments from Core AKO26-60-2GC, Peru upwelling [dataset]. P.P. Shirshov Institute of Oceanology, Russian Academy of Sciences, Moscow, PANGAEA, https://doi.org/10.1594/PANGAEA.778855, In supplement to: Zhabina, NN et al. (1983): Sulfur compounds in sediments of the Peru upwelling. Litologiya i Poleznyye Iskopaemyye (Lithology and Mineral Resources), 18(1), 101-120

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Project(s):
Coverage:
Latitude: -10.300000 * Longitude: -80.083333
Minimum DEPTH, sediment/rock: 0.065 m * Maximum DEPTH, sediment/rock: 2.350 m
Event(s):
AKO26-60-2GC * Latitude: -10.300000 * Longitude: -80.083333 * Elevation: -6250.0 m * Location: East Pacific * Method/Device: Gravity corer (GC)
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
DEPTH, sediment/rockDepth sedmGeocode
Depth, top/minDepth topmZhabina, Nina N
Depth, bottom/maxDepth botmZhabina, Nina N
Sediment typeSedimentZhabina, Nina N
Water content, wet massWater wm%Zhabina, Nina NCalculated from weight loss after drying at 105°C
Oxidation reduction (RedOx) potentialEhmVZhabina, Nina NEh, Pt-electrode
Sulfur bound in sulfateS in [SO4]2-%Zhabina, Nina NWet chemistryof interstitial water
Sulfur bound in sulfateS in [SO4]2-%Zhabina, Nina NWet chemistryof dry sediment matter
Sulfur bound in sulfideS (S2-)%Zhabina, Nina NWet chemistryof dry sediment matter
10 Sulfur, elemental%Zhabina, Nina NWet chemistryof dry sediment matter
11 Sulfur of pyriteS Py%Zhabina, Nina NWet chemistryof dry sediment matter
12 Sulfur, organicS org%Zhabina, Nina NWet chemistryof dry sediment matter
13 Sulfur, total reducedTS reduced%Zhabina, Nina NWet chemistryof dry sediment matter
14 Carbon, organic, totalTOC%Zhabina, Nina NKnopp method
Size:
152 data points

Data

Download dataset as tab-delimited text — use the following character encoding:


Depth sed [m]

Depth top [m]

Depth bot [m]

Sediment

Water wm [%]
(Calculated from weight loss a...)

Eh [mV]
(Eh, Pt-electrode)

S in [SO4]2- [%]
(of interstitial water, Wet ch...)

S in [SO4]2- [%]
(of dry sediment matter, Wet c...)

S (S2-) [%]
(of dry sediment matter, Wet c...)
10 
[%]
(of dry sediment matter, Wet c...)
11 
S Py [%]
(of dry sediment matter, Wet c...)
12 
S org [%]
(of dry sediment matter, Wet c...)
13 
TS reduced [%]
(of dry sediment matter, Wet c...)
14 
TOC [%]
(Knopp method)
0.0650.050.08clayey mud, soft, cheesy, bluish-gray70.52150.0870.2090.00060.0100.0960.1820.2891.56
0.1500.100.20same, more dense64.7700.0900.164>0.00000.0080.0580.0710.1371.68
0.2500.200.30same, darker transitive color66.5800.1050.208>0.00000.0070.0910.0610.1591.86
0.3500.300.40clayey mud, fine grained, soft, homogeneous, olive-green. Light H2S odor up to the end of the core64.20.1160.2070.00070.0330.9090.1221.0653.03
0.6500.600.70same64.80.0880.1630.00130.0280.9640.1171.1102.88
1.0501.001.10same63.9-850.1150.2040.00080.0370.9420.0971.0773.93
1.4001.351.45same62.50.0920.1540.00130.0330.9520.1231.1092.94
1.8501.801.90same62.5-800.0630.1050.00150.0330.9040.1171.0552.97
2.0452.002.09same62.5600.0850.1600.00150.0511.0350.1131.2003.00
2.1252.092.16same, with brownish and bluish-gray patches and lenses65.30.0730.1370.00050.0040.6840.1730.8622.75
2.2002.162.24same62.01000.0760.1240.00060.0020.8040.2961.1033.40
2.3502.302.40clayey mud, very dense, olive-green59.01050.0740.1060.00210.0030.8720.2261.1033.83