HR: 0800h
AN: T21A-0455 [Abstracts]
TI: The Clay Mineralogy Of Fracture Coatings Observed In Mudrock Cuttings From The SAFOD
Borehole
AU: * Schleicher, A M
EM: anja.schleicher@web.de
AF: Department of Geological Sciences, University of Michigan, 1100 N University Ave., Ann Arbor, MI
48109-1005
United States
AU: Warr, L N
EM: warr@illite.u-strasbg.fr
AF: Centre de Géochimie de la Surface (CGS/EOST), 1, Rue Blessig, Strasbourg, 67084
France
AU: van der Pluijm, B A
EM: vdpluijm@umich.edu
AF: Department of Geological Sciences, University of Michigan, 1100 N University Ave., Ann Arbor, MI
48109-1005
United States
AB:
A number of mudrock drill cuttings have been investigated from shear zones at 1500 m and 3066 m depths showing abundant
polished surfaces with occasional slip striations. Electron microscopy (SEM, TEM) and X-ray mineral identification study
reveal the occurrence of thin clay film coatings containing smectite, chlorite, illite, quartz, albite and a possible
serpentine mineral. This type of mineral assemblage was also observed along adjacent microveins and a freshly opened
fracture. In order to compare these surface minerals with the drilling mud smectite, they were sequentially removed by
ultrasonic treatment. The extreme sensitivity of this clay
material under the TEM electron beam confirms the presence of abundant smectite on the polished mudrock surfaces, which shows
compositional differences from that of the drilling mud. It contains notably more Fe, Mg and K and has a lower Si-Al ratio
than the drilling mud montmorillonite. Additional differences between these two types of smectite could be recognized after
hydration and chemical treatment (ethlylene glycol and glycerol solvation) whereby the natural smectite phase develops less
hydrated states. In an attempt to examine the natural hydration states of these swelling smectite minerals, onsite
impregnation (LR White resin) techniques have been applied. We suggest that these well oriented smectite coatings are partly
precipitated from percolating solutions during fault creep.
DE: 8159 Rheology: crust and lithosphere (8031)
DE: 8194 Instruments and techniques
SC: Tectonophysics [T]
MN: Fall Meeting 2005