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Brüning, Markus; Sahling, Heiko; MacDonald, Ian R; Ding, Feng; Bohrmann, Gerhard (2010): (Table 2) Asphalt samples taken in the surveyed area at Chapopote Knoll, Southern Gulf of Mexico [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.771645, Supplement to: Brüning, M et al. (2010): Origin, distribution, and alteration of asphalts at the Chapopote Knoll, Southern Gulf of Mexico. Marine and Petroleum Geology, 27(5), 1093-1106, https://doi.org/10.1016/j.marpetgeo.2009.09.005

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Abstract:
Following the discovery of asphalt volcanism in the Campeche Knolls a research cruise was carried out in 2006 to unravel the nature of the asphalt deposits at Chapopote. The novel results support the concept that the asphalt deposits at the seafloor in 3000 m of water depth originate from the seepage of heavy petroleum with a density slightly greater than water. The released petroleum forms characteristic flow structures at the seafloor with surfaces that are 'ropy' or 'rough' similar to magmatic lava flows. The surface structures indicate that the viscosity of the heavy petroleum rapidly increases after extrusion due to loss of volatiles. Consequently, the heavy petroleum forms the observed asphalt deposit and solidifies. Detailed survey with a remotely operated vehicle revealed that the asphalts are subject to sequential alterations: e.g. volume reduction leading to the formation of visible cracks in the asphalt surface, followed by fragmentation of the entire deposit. While relatively fresh asphalt samples were gooey and sticky, older, fragmented pieces were found to be brittle without residual stickiness. Furthermore, there is evidence for petroleum seepage from below the asphalt deposits, leading to local up-doming and, sometimes, to whip-shaped extrusions. Extensive mapping by TV-guided tools of Chapopote Asphalt Volcano indicates that the main asphalt deposits occur at the south-western rim that borders a central, crater-like depression. The most recent asphalt deposit at Chapopote is the main asphalt field covering an area of ~2000 m**2. Asphalt volcanism is distinct from oil and gas seepage previously described in the Gulf of Mexico and elsewhere because it is characterized by episodic intrusions of semi-solid hydrocarbons that spread laterally over a substantial area and produce structures with significant vertical relief. As Chapopote occurs at the crest of a salt structure it is inferred that asphalt volcanism is a secondary result of salt tectonism.
Coverage:
Median Latitude: 21.899408 * Median Longitude: -93.436792 * South-bound Latitude: 21.899000 * West-bound Longitude: -93.437500 * North-bound Latitude: 21.900600 * East-bound Longitude: -93.435400
Date/Time Start: 2006-04-11T05:12:00 * Date/Time End: 2006-04-15T01:59:00
Minimum Elevation: -2935.0 m * Maximum Elevation: -2880.0 m
Event(s):
GeoB10617 (Dive81)  * Latitude Start: 21.899030 * Longitude Start: -93.435510 * Latitude End: 21.899150 * Longitude End: -93.437300 * Date/Time: 2006-04-11T05:12:00 * Elevation Start: -2913.0 m * Elevation End: -2910.0 m * Location: Chapopote * Campaign: M67/2b * Basis: Meteor (1986) * Method/Device: Remote operated vehicle (ROV)
GeoB10618  * Latitude: 21.899160 * Longitude: -93.436830 * Date/Time: 2006-04-11T21:08:00 * Elevation: -2903.0 m * Location: Chapopote * Campaign: M67/2b * Basis: Meteor (1986) * Method/Device: Gravity corer (GC)
GeoB10619 (Dive82)  * Latitude Start: 21.905550 * Longitude Start: -93.441610 * Latitude End: 21.898760 * Longitude End: -93.434150 * Date/Time: 2006-04-12T15:50:00 * Elevation Start: -2880.0 m * Elevation End: -2925.0 m * Location: Chapopote * Campaign: M67/2b * Basis: Meteor (1986) * Method/Device: Remote operated vehicle (ROV)
Comment:
GC - gravity core, ROV - suction is a suction sampler, PC - push core. Corrected position provides sample location in Fig. 7, cf. navigation error in Methods chapter.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEvent
Sample code/labelSample labelBrüning, Markus
Elevation of eventElevationm
Device typeDeviceBrüning, Markus
Location typeLoc typeBrüning, Markus
LATITUDELatitudeBrüning, MarkusGeocode
LONGITUDELongitudeBrüning, MarkusGeocode
Latitude, additionalLatitude+Brüning, MarkusCorrected position on Fig. 7
Longitude, additionalLongitude+Brüning, MarkusCorrected position on Fig. 7
10 Rock typeRockBrüning, MarkusProperties
Size:
68 data points

Data

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


Event

Sample label

Elevation [m]

Device

Loc type

Latitude

Longitude

Latitude+

Longitude+
10 
Rock
GeoB10618 GeoB10618-2903GCRopy surface indicates MAF21.8992-93.4368Pure asphalt, ropysurface, largepiece of gashydrate at bottom
GeoB10623-2 GeoB10623-2-2895GCRopy surface indicates MAF21.8993-93.4370Pure asphalt,ropysurface, cf. Fig. 9a
GeoB10617 GeoB10617-5-2913ROV-SuctionMAF21.8990-93.437121.8991-93.4373Brittle centimeter sized asphalt pieces, drilled from smooth/ropysurface
GeoB10617GeoB10617-6-2913ROV-ManipulatorMAF21.8991-93.437221.8991-93.4373~40 cm piece of soft sticky asphalt
GeoB10617GeoB10617-7-2913ROV-SuctionMAF21.8992-93.437121.8992-93.4373Brittle centimeter sized asphalt pieces
GeoB10617GeoB10617-8-2913ROV-SuctionMAF21.8992-93.437121.8992-93.4373Brittle centimeter sized asphalt pieces
GeoB10619 GeoB10619-13-2880ROV-PCBetween SO174 Fieldand Bubble Site21.9006-93.436421.9006-93.4364Oily sediment, cf. Fig. 6g
GeoB10619GeoB10619-15-2880ROV-SuctionBetween MAF and Bubble site21.8995-93.436421.8995-93.4364Fragmented asphalt
GeoB10619GeoB10619-17-2880ROV-SuctionE of MAF21.8995-93.436421.8993-93.4370Brittle asphalt, not buoyant
GeoB10622 GeoB10622-1-2915ROV-PressureMAF21.8993-93.437121.8992-93.4374Up-domed asphalt, cf. Fig. 6c
GeoB10622GeoB10622-3-2915ROV-NetBubble site21.8998-93.435421.8998-93.4354Fragmented, brittle asphalt, cf. Fig. 9b
GeoB10625 GeoB10625-16-2935ROV-SuctionMAF21.8992-93.437521.8990-93.4374Sticky asphalt, microbialmat-covered