HR: 0800h
AN: GP41F-01 [Abstracts]
TI: Micropaleontological and Paleomagnetic Characterization of La Ceiba K/T Boundary Section, Central Mexico
AU: * Martínez-López, M
EM: marcelam@geofisica.unam.mx
AF: Universidad Nacional Autónoma de México, Ciudad Universitaria, Instituto de Geofísica,
México, 04510, Mexico
AU: Urrutia-Fucugauchi, J
EM: juf@geofisica.unam.mx
AB:
We report results of a micropaleontological and magnetostratigraphic study of the La Ceiba section that spans
the K/T boundary. La Ceiba is located in central Mexico (20o 19.8' N, 97o 41.0' W) within the Tampico-Mizantla
basin. The K/T boundary is marked by a clastic unit of about one-meter thickness intercalated between the
carbonate hemipelagic marls of the Cretaceous Mendez Formation and the Paleocene Velasco Formation. The
clastic unit can be divided into four sub-units, according to their texture and architectural characteristics following
Arenillas et al. (2002). The basal sub-unit is formed by calcareous marls and is rich in shocked quartz and
millimeter size spherules with microtektites and bioclasts of shallow water origin. The second sub-unit is formed
by medium-grained sandstones, with clasts and quartz fragments, feldspars, metamorphic and calcareous
fragments and re-worked benthic and planktic foraminifera. The third sub-unit is composed by a single body of
medium- to fine-grained sandstones with tabular geometry. In this sub-unit, cross- and parallel-lamination trough
cross-stratification, current ripples and climbing ripples have been observed. The top sub-unit is a tabular body
of fine-grained sandstones, showing parallel-lamination and low-angle cross-lamination, with asymmetric
ripples and burrow traces to the top. For the paleontologic and paleomagnetic study we collected twenty-five
oriented samples across the section. We measured the low-field susceptibility, intensity and direction of the
NRM. The vectorial composition and stability of NRM were analyzed by progressive thermal and alternating field
demagnetization. Vectorial orthogonal diagrams and vector subtraction and principal component analysis were
used to determine the characteristic magnetization and secondary components for each sample. The
characteristic NRM negative inclination and southward declination in the K/T clastic sediments indicate a reverse
polarity, which is correlated to reverse chron 29r that spans the K/T boundary. Micropaleontology analyses permit
identification of six biozones. Two biozones (biozone of Rugoglobigerina scootti and Abathomphalus
mayaroensis) correspond to the Maastrichtian. Four biozones (Guembelitria cretácea, Parvularogoglobigerina
eugubina, Parasubotina pseudobulloides and Acarina trinidadensis) correspond to the Danian.
DE: 1520 Magnetostratigraphy
DE: 3030 Micropaleontology (0459, 4944)
DE: 4944 Micropaleontology (0459, 3030)
DE: 4950 Paleoecology
SC: Geomagnetism and Paleomagnetism [GP]
MN: 2007 Joint Assembly