Showing posts with label выветривание оливина. Show all posts
Showing posts with label выветривание оливина. Show all posts

Thursday, April 7, 2011

Olivine weathering microtexture in dunite

Click on the image to enlarge.      Sample:Michael Velbel; Photo: Dan Snyder
Characteristic diamond-shaped etch pits in olivine. The etch pit field is adjacent to a microfracture in the olivine, through which fluid has permeated, creating the etch pits. Orange areas are iron-oxide mineral stains. Webster-Addie ultramafic body, Jackson County, western North Carolina. Plane-polarized light (PPL). Magnification 400X.

Thanks to Dr. Michael Velbel, Michigan State U., for the loan of this and many other thin sections.

Wednesday, April 6, 2011

Etch pits in olivine - Webster-Addie ultramafic body

Click on image to enlarge.          Photo © Daniel R. Snyder
The dark specks that appear to be mineral grains or polishing grit are actually microscopic etch pits  along fractures in and around this olivine grain. These fractures provided access to fluids that developed weathering textures in the olivine. Webster-Addie ultramafic body, Blue Ridge Mountains, Jackson County, western North Carolina. XPL. Imaged area 0.5 mm x 0.8 mm.

The etch pits stand out more clearly in this PPL image of the same feature (same scale as above):

Click on image to enlarge.          Photo © Daniel R. Snyder



Tuesday, April 5, 2011

Weathering microtexture in olivine.

Click on the image to enlarge. Sample: Michael Velbel; photo: Dan Snyder
Coalescing funnel-shaped etch pits forming serrated edges in olivine (light gray). Darker gray at top and right is serpentine. Webster-Addie ultramafic body, Jackson County, western North Carolina. Scanning electron microscope (SEM) image of polished thin section (backscattered electron image), magnification 650x.

Thanks to Dr. Michael Velbel, Michigan State U., for the sample, and thanks to Dr. Velbel and NASA for the SEM time. Thanks also to E. Danielewicz for assistance with electron microscopy.