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Rodrigo-Gámiz, Marta; Rampen, Sebastiaan W; Schouten, Stefan; Sinninghe Damsté, Jaap S (2016): Long chain alkyl diol distribution in Arabian Sea surface sediments [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.863586, Supplement to: Rodrigo-Gámiz, M et al. (2016): The impact of oxic degradation on long chain alkyl diol distributions in Arabian Sea surface sediments. Organic Geochemistry, 100, 1-9, https://doi.org/10.1016/j.orggeochem.2016.07.003

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Abstract:
Oxygen exposure has a large impact on lipid biomarker preservation in surface sediments and may affect the application of organic proxies used for reconstructing past environmental conditions. To determine its effect on long chain alkyl diol and keto-ol based proxies, the distributions of these lipids was studied in nine surface sediments from the Murray Ridge in the Arabian Sea obtained from varying water depths (900 to 3000 m) but in close lateral proximity and, therefore, likely receiving a similar particle flux. Due to substantial differences in bottom water oxygen concentration (<3 to 77 µmol/L) and sedimentation rate, substantial differences exist in the time the biomarker lipids are exposed to oxygen in the sediment. Long chain alkyl diol and keto-ol concentrations in the surface sediments (0-0.5 cm) decreased progressively with increasing oxygen exposure time, suggesting increased oxic degradation. The 1,15-keto-ol/diol ratio (DOXI) increased slightly with oxygen exposure time as diols had apparently slightly higher degradation rates than keto-ols. The ratio of 1,14- vs. 1,13- or 1,15-diols, used as upwelling proxies, did not show substantial changes. However, the C30 1,15-diol exhibited a slightly higher degradation rate than C28 and C30 1,13-diols, and thus the Long chain Diol Index (LDI), used as sea surface temperature proxy, showed a negative correlation with the maximum residence time in the oxic zone of the sediment, resulting in ca. 2-3.5 °C change, when translated to temperature. The UK'37 index did not show significant changes with increasing oxygen exposure. This suggests that oxic degradation may affect temperature reconstructions using the LDI in oxic settings and where oxygen concentrations have varied substantially over time.
Coverage:
Median Latitude: 22.256481 * Median Longitude: 63.430740 * South-bound Latitude: 21.926670 * West-bound Longitude: 62.895000 * North-bound Latitude: 22.565000 * East-bound Longitude: 64.063330
Date/Time Start: 2009-01-12T00:00:00 * Date/Time End: 2009-01-21T00:00:00
Minimum DEPTH, sediment/rock: m * Maximum DEPTH, sediment/rock: m
Event(s):
PA900  * Latitude: 22.548330 * Longitude: 64.040000 * Date/Time: 2009-01-12T00:00:00 * Elevation: -885.0 m * Location: Northern Arabian Sea * Campaign: 64PE301 (PASOM) * Basis: Pelagia * Method/Device: Box corer (BC)
PA1000  * Latitude: 22.565000 * Longitude: 64.063330 * Date/Time: 2009-01-12T00:00:00 * Elevation: -1013.0 m * Location: Northern Arabian Sea * Campaign: 64PE301 (PASOM) * Basis: Pelagia * Method/Device: Box corer (BC)
PA1200  * Latitude: 22.331670 * Longitude: 63.600000 * Date/Time: 2009-01-21T00:00:00 * Elevation: -1172.0 m * Location: Northern Arabian Sea * Campaign: 64PE301 (PASOM) * Basis: Pelagia * Method/Device: Box corer (BC)
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEventRodrigo-Gámiz, Marta
Latitude of eventLatitudeRodrigo-Gámiz, Marta
Longitude of eventLongitudeRodrigo-Gámiz, Marta
Elevation of eventElevationmRodrigo-Gámiz, Marta
DEPTH, sediment/rockDepth sedmRodrigo-Gámiz, MartaGeocode – surface samples from 0-0.5 cm depth
Oxygen penetration depthOPD depthmmRodrigo-Gámiz, Marta
Residence timeRTaRodrigo-Gámiz, Martatoz = residence time the organic matter spends in the oxic zone
Carbon, organic, totalTOC%Rodrigo-Gámiz, Marta
Carbon, organic, per unit sediment massC org/sedmg/gRodrigo-Gámiz, Marta
10 Alkenone, unsaturation index UK'37UK'37Rodrigo-Gámiz, Marta
11 Sea surface temperature, annual meanSST (1-12)°CRodrigo-Gámiz, MartaCalculated from UK'37 (Müller et al, 1998)
12 Alkenone, unsaturation index UK'37UK'37Rodrigo-Gámiz, Martaduplicate
13 Sea surface temperature, annual meanSST (1-12)°CRodrigo-Gámiz, MartaCalculated from UK'37 (Müller et al, 1998)duplicate
14 Alkenone, C37:3C37:3ng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 9.6 %, per dry sediment
15 Alkenone, C37:2C37:2ng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 7.8 %, per dry sediment
16 Alkenone, C37:3C37:3ng/gRodrigo-Gámiz, Martaduplicate, Relative Preservation Efficiency: 14.3 %, per dry sediment
17 Alkenone, C37:2C37:2ng/gRodrigo-Gámiz, Martaduplicate, Relative Preservation Efficiency: 13.4 %, per dry sediment
18 Long chain diol indexLDIRodrigo-Gámiz, Marta
19 Sea surface temperature, annual meanSST (1-12)°CRodrigo-Gámiz, MartaCalculated after Rampen et al. (2012)
20 Long chain diol indexLDIRodrigo-Gámiz, Martaduplicate
21 Sea surface temperature, annual meanSST (1-12)°CRodrigo-Gámiz, MartaCalculated after Rampen et al. (2012)duplicate
22 Diol upwelling indexUpw indexRodrigo-Gámiz, Marta1,15 upwelling
23 Diol upwelling indexUpw indexRodrigo-Gámiz, Marta1,13 upwelling
24 Long chain diol, C28:1 1,14-diolC28:1 1.14ng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 6.9 %, per dry sediment
25 Long chain diol, C28 1,14-diolC28 1,14ng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 5.2 %, per dry sediment
26 Long chain diol, C28 1,13-diolC28 1,13-diolng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 10.5 %, per dry sediment
27 Long chain diol, C30 1,15-diolC30 1,15-diolng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 4.3 %, per dry sediment
28 Long chain diol, C30:1 1,14-diolC30:1 1,14-diolng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 1.5 %, per dry sediment
29 Long chain diol, C30 1,14-diolC30 1,14-diolng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 5.7 %, per dry sediment
30 Long chain diol, C30 1,13-diolC30 1,13-diolng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 10.1 %, per dry sediment
31 Long chain diol, C32 1,15-diolC32 1,15-diolng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 4.2 %, per dry sediment
32 Diol oxidation indexDOXIRodrigo-Gámiz, MartaC28 1,15
33 Diol oxidation indexDOXIRodrigo-Gámiz, MartaC30 1,15
34 Diol oxidation indexDOXIRodrigo-Gámiz, MartaC32 1,15
35 Diol oxidation indexDOXIRodrigo-Gámiz, MartaC34 1,15
36 Diol oxidation indexDOXIRodrigo-Gámiz, MartaC28 1,15 duplicate
37 Diol oxidation indexDOXIRodrigo-Gámiz, MartaC30 1,15 duplicate
38 Diol oxidation indexDOXIRodrigo-Gámiz, MartaC32 1,15 duplicate
39 Diol oxidation indexDOXIRodrigo-Gámiz, MartaC34 1,15 duplicate
40 C30 1,15-keto-olC30 1,15-keto-olng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 7.2 %, per dry sediment
41 C32 1,15-keto-olC32 1,15-keto-olng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 8.5 %, per dry sediment
42 C34 1,15-keto-olC34 1,15-keto-olng/gRodrigo-Gámiz, MartaRelative Preservation Efficiency: 7.1 %, per dry sediment
43 C30 1,15-keto-olC30 1,15-keto-olng/gRodrigo-Gámiz, Martaduplicate, Relative Preservation Efficiency: 6.8 %, per dry sediment
44 C32 1,15-keto-olC32 1,15-keto-olng/gRodrigo-Gámiz, Martaduplicate, Relative Preservation Efficiency: 9.0 %, per dry sediment
45 C34 1,15-keto-olC34 1,15-keto-olng/gRodrigo-Gámiz, Martaduplicate, Relative Preservation Efficiency: 8.9 %, per dry sediment
Size:
358 data points

Data

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


Event

Latitude

Longitude

Elevation [m]

Depth sed [m]
(surface samples from 0-0.5 cm...)

OPD depth [mm]

RT [a]
(toz = residence time the orga...)

TOC [%]

C org/sed [mg/g]
10 
UK'37
11 
SST (1-12) [°C]
(Calculated from UK'37 (Müller...)
12 
UK'37
(duplicate)
13 
SST (1-12) [°C]
(duplicate, Calculated from UK...)
14 
C37:3 [ng/g]
(Relative Preservation Efficie...)
15 
C37:2 [ng/g]
(Relative Preservation Efficie...)
16 
C37:3 [ng/g]
(duplicate, Relative Preservat...)
17 
C37:2 [ng/g]
(duplicate, Relative Preservat...)
18 
LDI
19 
SST (1-12) [°C]
(Calculated after Rampen et al...)
20 
LDI
(duplicate)
21 
SST (1-12) [°C]
(duplicate, Calculated after R...)
22 
Upw index
(1,15 upwelling)
23 
Upw index
(1,13 upwelling)
24 
C28:1 1.14 [ng/g]
(Relative Preservation Efficie...)
25 
C28 1,14 [ng/g]
(Relative Preservation Efficie...)
26 
C28 1,13-diol [ng/g]
(Relative Preservation Efficie...)
27 
C30 1,15-diol [ng/g]
(Relative Preservation Efficie...)
28 
C30:1 1,14-diol [ng/g]
(Relative Preservation Efficie...)
29 
C30 1,14-diol [ng/g]
(Relative Preservation Efficie...)
30 
C30 1,13-diol [ng/g]
(Relative Preservation Efficie...)
31 
C32 1,15-diol [ng/g]
(Relative Preservation Efficie...)
32 
DOXI
(C28 1,15)
33 
DOXI
(C30 1,15)
34 
DOXI
(C32 1,15)
35 
DOXI
(C34 1,15)
36 
DOXI
(C28 1,15 duplicate)
37 
DOXI
(C30 1,15 duplicate)
38 
DOXI
(C32 1,15 duplicate)
39 
DOXI
(C34 1,15 duplicate)
40 
C30 1,15-keto-ol [ng/g]
(Relative Preservation Efficie...)
41 
C32 1,15-keto-ol [ng/g]
(Relative Preservation Efficie...)
42 
C34 1,15-keto-ol [ng/g]
(Relative Preservation Efficie...)
43 
C30 1,15-keto-ol [ng/g]
(duplicate, Relative Preservat...)
44 
C32 1,15-keto-ol [ng/g]
(duplicate, Relative Preservat...)
45 
C34 1,15-keto-ol [ng/g]
(duplicate, Relative Preservat...)
PA900 22.548364.0400-88500.1016.0660.600.9727.90.9627.74621288339888320.9525.80.9325.20.670.9722234109111433628984534141127600.310.730.8000.360.780.832304.643343.61458.809304.7613237.121766.78
PA1000 22.565064.0633-101301.00254.6346.300.9527.50.9527.552210446590112640.9325.30.9224.90.710.970135346310130601945406312992200.280.740.7600.350.770.871673.452833.10287.2717429.6424401.473096.57
PA1200 22.331763.6000-117201.40634.1241.200.9527.50.9527.4470916150293340.9325.20.9124.60.700.96712826808524701735303111375200.290.730.8200.310.760.741372.452423.71332.444177.417192.89927.26
PA1300 22.300063.6000-130602.90772.4924.900.9527.40.9527.4359644331255520.9224.90.9024.40.710.96466149651136776918197142200.240.730.8500.320.790.85633.381303.03176.851296.862453.66264.74
PA1500 22.078363.0750-149507.101.2412.400.9527.60.9527.4111233612822610.9124.70.8924.20.720.9621531311260112343158500.290.760.8500.310.800.88207.36431.8956.74856.941888.53235.78
PA1800 22.308363.4083-178606.201671.2112.100.9627.70.9627.67316088318060.8924.10.8823.80.710.953182821222692275166300.260.760.8400.310.790.88152.57287.6838.97363.97660.95102.38
PA2000 22.145063.0183-197005.801920.868.600.9627.60.9527.6469975411400.8422.40.8723.50.740.9341013179429130112400.370.810.8900.380.830.89136.79206.9528.79653.611107.63140.18
PA2500 22.105062.8950-247009.801920.989.800.9627.70.9527.55412748116100.8823.90.8924.10.700.948283271931993426239600.350.790.8800.330.800.88376.69654.75107.892791.035440.12751.77
PA3000 21.926763.1767-30030190.000.707.000.9627.70.9627.732758367980.8924.20.8924.20.740.95881849146722294200.320.770.8300.320.790.88165.77285.8532.52634.791194.92157.59