The Maritimes Basin of Atlantic Canada: basin creation and destruction in collisional zone of Pangea. In: The Phanerozoic sedimentary basins of the United States and Canada
Chapter
Publication Date:
2008
Short description:
The Maritimes Basin of Atlantic Canada: basin creation and destruction in collisional zone of Pangea. In: The Phanerozoic sedimentary basins of the United States and Canada / Gibling, M.R., Culshaw, N., Rygel, M.c., Pascucci, V.. - 5:(2008), pp. 211-244. [10.1016/S1874-5997(08)00006-3]
abstract:
During the final assembly of Pangea, the Maritimes Basin of Atlantic Canada was tectonically
active for B120 Myr from the
Mid-Devonian to the Early Permian, following terrane accretion and ocean closure in the region. The
basin’s history records a prolonged period of convergence that post-dated the collision of Gondwana
and Laurussia. The 12 km of basin fill was laid down in suites of periodically connected depocenters, and parts of the region
experienced a polycyclic basin
history, with repeated subsidence and inversion of fault-bounded depocenters, many associated with
strike-slip faults. During two periods in the basin history, sedimentation overstepped fault zones
under a regime of thermal subsidence to blanket much of the region. The basin fills are largely
continental but include one open-marine interval with evaporite accumulation (Mississippian), as
well as restricted-marine intervals, reflecting progressive loss of oceanic connection. Basinal
architecture testifies to rapid subsidence against a backdrop of glacioeustatic influence in a
paleoequatorial setting. Volcanics and intrusions were especially prominent during Devonian to
Mississippian convergence, and halokinesis greatly influenced later basin development.
A partial analogue for the Maritimes Basin is provided by modern Turkey and environs, situated in
the Arabia–Eurasia collision zone, where strike-slip faults and basin formation record continued
post-collisional convergence adjacent to the Zagros thrust belt. Local crustal thickening,
delamination of subducting crust, volcanism, extensional zones, and basin
creation along crustal-scale faults are prominent in this region.
active for B120 Myr from the
Mid-Devonian to the Early Permian, following terrane accretion and ocean closure in the region. The
basin’s history records a prolonged period of convergence that post-dated the collision of Gondwana
and Laurussia. The 12 km of basin fill was laid down in suites of periodically connected depocenters, and parts of the region
experienced a polycyclic basin
history, with repeated subsidence and inversion of fault-bounded depocenters, many associated with
strike-slip faults. During two periods in the basin history, sedimentation overstepped fault zones
under a regime of thermal subsidence to blanket much of the region. The basin fills are largely
continental but include one open-marine interval with evaporite accumulation (Mississippian), as
well as restricted-marine intervals, reflecting progressive loss of oceanic connection. Basinal
architecture testifies to rapid subsidence against a backdrop of glacioeustatic influence in a
paleoequatorial setting. Volcanics and intrusions were especially prominent during Devonian to
Mississippian convergence, and halokinesis greatly influenced later basin development.
A partial analogue for the Maritimes Basin is provided by modern Turkey and environs, situated in
the Arabia–Eurasia collision zone, where strike-slip faults and basin formation record continued
post-collisional convergence adjacent to the Zagros thrust belt. Local crustal thickening,
delamination of subducting crust, volcanism, extensional zones, and basin
creation along crustal-scale faults are prominent in this region.
Iris type:
2.1 Contributo in volume (Capitolo o Saggio)
List of contributors:
Gibling, M. R.; Culshaw, N; Rygel, Mc; Pascucci, Vincenzo
Book title:
Sedimentary Basins of the world