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Wilson, R C L; Hiscott, Richard N (2007): (Table T1) Ages of white mica clasts in core samples of ODP Hole 210-1276A [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.776711, Supplement to: Wilson, RCL; Hiscott, RN (2007): Ar/Ar dating of white mica clasts in early to late postrift sediments sampled during ODP Leg 210 off Newfoundland. In: Tucholke, BE; Sibuet, J-C; Klaus, A (eds.) Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 210, 1-13, https://doi.org/10.2973/odp.proc.sr.210.106.2007

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Abstract:
Fifty-seven white mica clasts were separated from five samples taken from near the bases of turbidites ranging in age from early Albian to middle Eocene. Twenty two (39%) of the micas have ages between 260 and 340 Ma and five (9%) have older ages (~400-600 Ma). The former age range is characteristic of the North American Alleghenian orogeny and the Iberian Variscan orogeny. The latter range is characteristic of the North American Acadian orogeny and older basement rocks in the Grand Banks and Newfoundland areas. Both age ranges are present in the middle Eocene sample, but only the younger range occurs in the middle Albian sample. This difference could be a sampling artifact. If this is not the case, then the most likely explanation is that the Acadian-aged micas within the Meguma Zone underlying the Grand Banks were totally reset by Alleghenian reactivation of the zone, a feature which occurs extensively in Nova Scotia. The addition of Acadian-aged micas in the middle Eocene sample may reflect a change in sediment provenance as drainage systems unrelated to rift topography developed. With the exception of one clast dated at 186 Ma, the 12 other micas obtained from the upper Paleocene sample yielded ages between 55 and 74 Ma, with 7 falling within ±2 m.y. of the 57-Ma age of the sample indicated by the biostratigraphic age-depth plot for Site 1276. This, together with the volcaniclastic content of the sample, indicates an input from near-contemporaneous volcanism. The nearest known occurrences of near-contemporaneous late Paleocene volcanism that could have produced white micas are in Greenland and Portugal, some 2000 and 1500 km distant, respectively, from Site 1276 during the Paleocene. However, ages of volcanism in these areas indicate that they could probably not be sources of micas younger than 60 m.y., which suggests some as-yet unknown volcanic source in the North Atlantic area. Accumulation in the Grand Banks area of airborne-transported volcaniclastic material from eruptions of slightly different ages, followed by a single resedimentation event, could account for the spread of dates obtained from the sample. White micas from the lowermost Albian sample show a spread of ages between 37 and 284 Ma that is completely different from the age distribution pattern of the middle Albian and middle Eocene samples. The sample location is between, and at least 25 m above and below, two igneous sills dated at 98 and 105 Ma. The sills have narrow thermal aureoles and ages older than the youngest detrital micas in the sample. It is unlikely, therefore, that the spread of mica ages in the sample is due to partial resetting of ages caused by thermal effects associated with the intrusion of the sills. The resetting may have been associated with a longer lived thermal event.
Project(s):
Coverage:
Latitude: 45.405330 * Longitude: -44.785830
Date/Time Start: 2003-02-09T16:20:00 * Date/Time End: 2003-07-16T08:44:00
Minimum DEPTH, sediment/rock: 869.4 m * Maximum DEPTH, sediment/rock: 1648.3 m
Event(s):
210-1276A * Latitude: 45.405330 * Longitude: -44.785830 * Date/Time Start: 2003-07-16T08:44:00 * Date/Time End: 2003-02-09T16:20:00 * Elevation: -4549.1 m * Penetration: 1736.9 m * Recovery: 790.35 m * Location: South Atlantic Ocean * Campaign: Leg210 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 103 cores; 936.9 m cored; 753 m drilled; 84.4 % recovery
Comment:
Sediment depth is given in mbsf. AGE is age of sample from age-depth plot.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Sample code/labelSample labelWilson, R C L
DEPTH, sediment/rockDepth sedmGeocode
EpochEpochWilson, R C LAge model, biostratigraphyage of sample
AGEAgeka BPGeocode
Age, datedAge datedkaWilson, R C LAge, 40Ar/39Ar Argon-Argonclast age
Age, dated standard deviationAge dated std dev±Wilson, R C Lclast age
Size:
228 data points

Data

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


Sample label

Depth sed [m]

Epoch

Age [ka BP]

Age dated [ka]

Age dated std dev [±]
210-1276A-9R-2,67-71869.4middle Eocene4800019300010000
210-1276A-9R-2,67-71869.4middle Eocene480002250007000
210-1276A-9R-2,67-71869.4middle Eocene480002530003000
210-1276A-9R-2,67-71869.4middle Eocene480002670003000
210-1276A-9R-2,67-71869.4middle Eocene480002740003000
210-1276A-9R-2,67-71869.4middle Eocene480002970003000
210-1276A-9R-2,67-71869.4middle Eocene480002980003000
210-1276A-9R-2,67-71869.4middle Eocene480003000004000
210-1276A-9R-2,67-71869.4middle Eocene480003020004000
210-1276A-9R-2,67-71869.4middle Eocene4800030800018000
210-1276A-9R-2,67-71869.4middle Eocene480003110009000
210-1276A-9R-2,67-71869.4middle Eocene480003120005000
210-1276A-9R-2,67-71869.4middle Eocene480003250002000
210-1276A-9R-2,67-71869.4middle Eocene480003370007000
210-1276A-9R-2,67-71869.4middle Eocene4800040200017000
210-1276A-9R-2,67-71869.4middle Eocene4800040900025000
210-1276A-9R-2,67-71869.4middle Eocene4800041200018000
210-1276A-9R-2,67-71869.4middle Eocene480004280005000
210-1276A-15R-3,108-110929.1upper Paleocene57000550001000
210-1276A-15R-3,108-110929.1upper Paleocene57000560001000
210-1276A-15R-3,108-110929.1upper Paleocene57000560001000
210-1276A-15R-3,108-110929.1upper Paleocene57000570003000
210-1276A-15R-3,108-110929.1upper Paleocene57000570001000
210-1276A-15R-3,108-110929.1upper Paleocene57000580000
210-1276A-15R-3,108-110929.1upper Paleocene57000580002000
210-1276A-15R-3,108-110929.1upper Paleocene57000610001000
210-1276A-15R-3,108-110929.1upper Paleocene57000650001000
210-1276A-15R-3,108-110929.1upper Paleocene57000680001000
210-1276A-15R-3,108-110929.1upper Paleocene57000720003000
210-1276A-15R-3,108-110929.1upper Paleocene57000740002000
210-1276A-15R-3,108-110929.1upper Paleocene570001860004000
210-1276A-31R-5,6-91085.0Turonian8800025900010000
210-1276A-31R-5,6-91085.0Turonian8800030800014000
210-1276A-31R-5,6-91085.0Turonian8800032300013000
210-1276A-56R-3,52-541322.3middle Albian1000001820003000
210-1276A-56R-3,52-541322.3middle Albian1000002620005000
210-1276A-56R-3,52-541322.3middle Albian10000027800010000
210-1276A-56R-3,52-541322.3middle Albian1000002790006000
210-1276A-56R-3,52-541322.3middle Albian1000002840008000
210-1276A-56R-3,52-541322.3middle Albian1000002860005000
210-1276A-56R-3,52-541322.3middle Albian1000002900005000
210-1276A-56R-3,52-541322.3middle Albian1000002930003000
210-1276A-56R-3,52-541322.3middle Albian1000002950006000
210-1276A-56R-3,52-541322.3middle Albian10000031400019000
210-1276A-56R-3,52-541322.3middle Albian10000060800011000
210-1276A-91R-4,100-1031648.3lower Albian1130003700018000
210-1276A-91R-4,100-1031648.3lower Albian1130008500022000
210-1276A-91R-4,100-1031648.3lower Albian113000890006000
210-1276A-91R-4,100-1031648.3lower Albian1130001280009000
210-1276A-91R-4,100-1031648.3lower Albian1130001570008000
210-1276A-91R-4,100-1031648.3lower Albian11300017400014000
210-1276A-91R-4,100-1031648.3lower Albian1130001920008000
210-1276A-91R-4,100-1031648.3lower Albian11300021600013000
210-1276A-91R-4,100-1031648.3lower Albian1130002330004000
210-1276A-91R-4,100-1031648.3lower Albian1130002350005000
210-1276A-91R-4,100-1031648.3lower Albian1130002840005000
210-1276A-91R-4,100-1031648.3lower Albian1130002840006000