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Han, Xiqiu; Suess, Erwin; Huang, Yong-Jiang; Wu, Nengyou; Bohrmann, Gerhard; Su, Xin; Eisenhauer, Anton; Rehder, Gregor; Fang, Yinxia (2008): (Table 2) Mineralogy, stable isotopes, and mineral percentages of the carbonate fraction of samples from the South China Sea [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.771248, Supplement to: Han, X et al. (2008): Jiulong Methane Reef: Microbial mediation seep-carbonates in the South China Sea. Marine Geology, 249(3-4), 243-256, https://doi.org/10.1016/j.margeo.2007.11.012

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Abstract:
Chemoherm carbonates, as well as numerous other types of methane seep carbonates, were discovered in 2004 along the passive margin of the northern South China Sea. Lithologically, the carbonates are micritic containing peloids, clasts and clam fragments. Some are highly brecciated with aragonite layers of varying thicknesses lining fractures and voids. Dissolution and replacement is common. Mineralogically, the carbonates are dominated by high magnesium calcites (HMC) and aragonite. Some HMCs with MgCO3 contents of between 30–38 mol%–extreme-HMC, occur in association with minor amounts of dolomite. All of the carbonates are strongly depleted in d13C, with a range from -35.7 to -57.5 per mil PDB and enriched in d18O (+ 4.0 to + 5.3 per mil PDB). Abundant microbial rods and filaments were recognized within the carbonate matrix as well as aragonite cements, likely fossils of chemosynthetic microbes involved in carbonate formation. The microbial structures are intimately associated with mineral grains. Some carbonate mineral grains resemble microbes. The isotope characteristics, the fabrics, the microbial structure, and the mineralogies are diagnostic of carbonates derived from anaerobic oxidation of methane mediated by microbes. From the succession of HMCs, extreme-HMC, and dolomite in layered tubular carbonates, combined with the presence of microbial structure and diagenetic fabric, we suggest that extreme-HMC may eventually transform into dolomites. Our results add to the worldwide record of seep carbonates and establish for the first time the exact locations and seafloor morphology where such carbonates formed in the South China Sea. Characteristics of the complex fabric demonstrate how seep carbonates may be used as archives recording multiple fluid regimes, dissolution, and early transformation events.
Coverage:
Median Latitude: 22.097297 * Median Longitude: 118.794340 * South-bound Latitude: 22.047083 * West-bound Longitude: 118.723083 * North-bound Latitude: 22.151000 * East-bound Longitude: 118.872767
Date/Time Start: 2004-06-11T05:00:00 * Date/Time End: 2004-06-27T11:12:00
Minimum Elevation: -771.0 m * Maximum Elevation: -473.0 m
Event(s):
SO177/1-28 (TVG-1)  * Latitude: 22.151000 * Longitude: 118.872400 * Date/Time: 2004-06-11T05:00:00 * Elevation: -498.0 m * Campaign: SO177/1 (SIGER) * Basis: Sonne * Method/Device: Television-Grab (TVG) * Comment: carbonate, chemoherm like struct.
SO177/1-29 (TVG-2)  * Latitude: 22.149000 * Longitude: 118.872767 * Date/Time: 2004-06-11T06:43:00 * Elevation: -484.0 m * Campaign: SO177/1 (SIGER) * Basis: Sonne * Method/Device: Television-Grab (TVG) * Comment: carbonate, chemoherm like struct.
SO177/1-30 (TVG-3)  * Latitude: 22.149717 * Longitude: 118.872283 * Date/Time: 2004-06-11T08:51:00 * Elevation: -473.0 m * Campaign: SO177/1 (SIGER) * Basis: Sonne * Method/Device: Television-Grab (TVG) * Comment: carbonate, chemoherm like struct.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEvent
Latitude of eventLatitude
Longitude of eventLongitude
Elevation of eventElevationm
Sample code/labelSample labelHan, XiqiuSample code
DescriptionDescriptionHan, XiqiuDescription and sampling position
δ13C, carbonateδ13C carb‰ PDBHan, XiqiuMass spectrometer Finnigan MAT 252
δ18O, carbonateδ18O carb‰ PDBHan, XiqiuMass spectrometer Finnigan MAT 252
Low magnesium calciteLMC%Han, XiqiuCalculated, see reference(s)Relative weight percentage
10 High magnesium calciteHMC%Han, XiqiuCalculated, see reference(s)Relative weight percentage / with MgCO3 / (mol %) /5-10
11 High magnesium calciteHMC%Han, XiqiuCalculated, see reference(s)Relative weight percentage / with MgCO3 / (mol %) / 10-15
12 High magnesium calciteHMC%Han, XiqiuCalculated, see reference(s)Relative weight percentage / with MgCO3 / (mol %) / 15-20
13 High magnesium calciteHMC%Han, XiqiuCalculated, see reference(s)Relative weight percentage / with MgCO3 / (mol %) / 30-40
14 DolomiteDol%Han, Xiqiu
15 AragoniteArg%Han, Xiqiu
Size:
660 data points

Data

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


Event

Latitude

Longitude

Elevation [m]

Sample label
(Sample code)

Description
(Description and sampling posi...)

δ13C carb [‰ PDB]
(Mass spectrometer Finnigan MA...)

δ18O carb [‰ PDB]
(Mass spectrometer Finnigan MA...)

LMC [%]
(Relative weight percentage, C...)
10 
HMC [%]
(Relative weight percentage / ...)
11 
HMC [%]
(Relative weight percentage / ...)
12 
HMC [%]
(Relative weight percentage / ...)
13 
HMC [%]
(Relative weight percentage / ...)
14 
Dol [%]
15 
Arg [%]
SO177/1-28 22.151000118.872400-498TVG1-1Massive-49.903.82001000000
SO177/1-2822.151000118.872400-498TVG1-6Massive-48.973.73001000000
SO177/1-2822.151000118.872400-498TVG1-7AChimney, outerlayer-40.331.71010000000
SO177/1-2822.151000118.872400-498TVG1-7BChimney, innerlayer-52.142.92001000000
SO177/1-2822.151000118.872400-498TVG1-8ATubular, outerlayer-52.513.52001000000
SO177/1-2822.151000118.872400-498TVG1-8BTubular, core-50.953.42001000000
SO177/1-2822.151000118.872400-498TVG1-13Tubular-50.503.9670930000
SO177/1-2822.151000118.872400-498TVG1-16Massive-54.773.09503200162
SO177/1-29 22.149000118.872767-484TVG2-1ATubular, outerlayer-55.623.38000500050
SO177/1-2922.149000118.872767-484TVG2-1CTubular, filling-56.163.1250000095
SO177/1-2922.149000118.872767-484TVG2-1BTubular, core-46.753.43000000100
SO177/1-2922.149000118.872767-484TVG2-2Chimney-54.303.63900647119
SO177/1-2922.149000118.872767-484TVG2-3AChimney, outerlayer-42.702.86120083301
SO177/1-2922.149000118.872767-484TVG2-3BChimney, filling-52.053.48004100059
SO177/1-2922.149000118.872767-484TVG2-3CChimney, core-42.523.28308600012
SO177/1-2922.149000118.872767-484TVG2-4Tabular-44.223.77024069700
SO177/1-30 22.149717118.872283-473TVG3-3AMassive, matrix-48.883.42004600054
SO177/1-3022.149717118.872283-473TVG3-3BMassive, cement-35.703.2710000099
SO177/1-50 22.047467118.776383-769TVG6-8-2Tubular-55.584.7950095000
SO177/1-5022.047467118.776383-769TVG6-9-2Massive-52.274.5840089610
SO177/1-51 22.047083118.775683-768TVG7-15-1Chemoherm-52.024.31102000079
SO177/1-5122.047083118.775683-768TVG7-16Chemoherm-51.344.841107600013
SO177/1-52 22.047517118.775850-769TVG8-C8-1Massive-52.864.7800940006
SO177/1-5222.047517118.775850-769TVG8-C5-2ATubular, outerlayer-51.294.80001000000
SO177/1-5222.047517118.775850-769TVG8-C5-2BTubular, core-48.285.28604205200
SO177/1-5222.047517118.775850-769TVG8-C5-3Tubular-49.134.29506300230
SO177/1-5222.047517118.775850-769TVG8-C6-2Tabular-50.594.57110800910
SO177/1-5222.047517118.775850-769TVG8-C8-1-1Tubular-47.054.44600820112
SO177/1-5222.047517118.775850-769TVG8-C2-1Massive-54.244.721800513010
SO177/1-53 22.047483118.775583-771TVG-9-C1-1AChemoherm, cement-49.464.1630000097
SO177/1-5322.047483118.775583-771TVG-9-C1-1BChemoherm, matrix-48.073.931001700073
SO177/1-5322.047483118.775583-771TVG9-C4AChemoherm, outerlayer-52.593.88150000085
SO177/1-5322.047483118.775583-771TVG9-C4BChemoherm, cement-51.644.11901800073
SO177/1-5322.047483118.775583-771TVG9-C4CChemoherm, filling-50.374.0260300091
SO177/1-72 22.047633118.775217-769TVG11-C2-1AChemoherm, cement-56.714.0650000095
SO177/1-7222.047633118.775217-769TVG11-C2-1BChemoherm, matrix-51.324.805063019211
SO177/1-7222.047633118.775217-769TVG11-C1-4-1ATubular, filling-55.484.801700542900
SO177/1-7222.047633118.775217-769TVG11-C1-4-1BTubular, wall-54.914.4411055024010
SO177/1-7222.047633118.775217-769TVG11-C1-2Massive-55.754.881007001911
SO177/1-7222.047633118.775217-769TVG11-C2-5AChemoherm, cement-52.674.1430000097
SO177/1-7222.047633118.775217-769TVG11-C2-5A-1Aragonite, outerlayer-57.553.90001300087
SO177/1-7222.047633118.775217-769TVG11-C2-5B-2Aragonite, innerlayer-56.464.03001300087
SO177/1-7222.047633118.775217-769TVG11-C2-5BChemoherm, matrix-51.235.16006903020
SO177/2-91 22.142300118.724150-555TVG13-C1-1AChimney, outerlayer-45.972.93084001240
SO177/2-9122.142300118.724150-555TVG13-C1-1BChimney, 2ndlayer-48.553.44084001410
SO177/2-9122.142300118.724150-555TVG13-C1-1CChimney, 3rdlayer-48.883.3500920800
SO177/2-9122.142300118.724150-555TVG13-C1-1DChimney, innerlayer-42.601.9670900030
SO177/2-9122.142300118.724150-555TVG13-C1-2Chimney-43.632.7509400330
SO177/2-9122.142300118.724150-555TVG13-C1-3Chimney-45.683.2009900010
SO177/2-9122.142300118.724150-555TVG13-C1-5Chimney-43.793.3509000720
SO177/2-9122.142300118.724150-555TVG13-C4-1Chimney-41.152.294504001240
SO177/2-9122.142300118.724150-555TVG13-C5-1Tabular-45.313.641600532830
SO177/2-92 22.143767118.723083-533TVG14-C1-1AChimney, outerlayer-47.543.111504204110
SO177/2-9222.143767118.723083-533TVG14-C1-1BChimney, middlelayer-46.833.251504903610
SO177/2-9222.143767118.723083-533TVG14-C1-1CChimney, innerlayer-50.473.99260007220
SO177/2-9222.143767118.723083-533TVG14-C2-1Tubular-49.884.08800682220
SO177/2-9222.143767118.723083-533TVG14-C2-2Tubular-47.844.21400811410
SO177/2-9222.143767118.723083-533TVG14-C2-3ATubular, filling-56.333.7100099010
SO177/2-9222.143767118.723083-533TVG14-C2-3BTubular, outerlayer-54.363.4400099010
SO177/2-9222.143767118.723083-533TVG14-C2-4Tubular-50.024.0090083800