HR: 1340h
AN: V33B-1393 [Abstracts]
TI: Supertoxic Flood Basalts: The CAMP – Siberian Trap Connection
AU: * Puffer, J H
EM: jpuffer@andromeda.rutgers.edu
AF: Department of Earth and Environmental Sciences, Rutgers University, Newark, NJ 07102,
United States
AB:
Several diverse magma types are represented throughout the CAMP and Siberian Trap LIPs, however, the main
extrusive phase of each province is highly unusual among continental flood basalts. The most widespread
extrusions were intermediate titanium (ITi-type) CAMP basalt and the lower portion of the Upper Sequence of
Siberian Trap. New and recently published data indicate that the geochemistry and petrology of these basalt
suites closely resemble each other and infer similar origins. The basalts are characterized by strong negative Nb-
Ta anomalies and unusual island arc-like depletion in high field strength elements, particularly Ti, plotted on
spider diagrams. The geochemical data is consistent with significant contributions from subducted slabs into the
magma source regions. If contaminated, volatile enriched mantle wedges were trapped beneath thick
continental plates during the assembly of Pangea, fertile magma sources would have remained dormant until
decompression melting was triggered during failed rift, then early rift stages of continental plate disassembly.
The combination of volatile enriched sources and highly extensional tectonism would create rare perfect storms
of toxicity. Calculated low viscosities assuming negligible carbon dioxide are consistent with rapid crustal
penetration. Resulting aphyric melts extruded at enormous effusive rates as thick sub-parallel flows across wide
subareal terrains through fissures extending several hundred km in length. High fountain heights would afford
ample opportunity for efficient degassing, perhaps into the stratosphere. When the supply of volatile flux was
exhausted magmatism ceased. The mass extinctions that coincide with CAMP and Siberian volcanism contrast
with some large plume and superplume events that correlate with expansions of biodiversity. This may be due in
part to contrasting magma access to sources of toxic volatiles, particularly sulfur concentrations in anoxic
subducted sediments.
DE: 1099 General or miscellaneous
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2007 Fall Meeting