Saturday, December 15, 2012

Montserate Mountain peridotite - full thin section.

Click on image to enlarge.          Sample: Michael Davis; Photo: Dan Snyder
Full thin section of igneous peridotite, Montserate Mountain, San Diego County, California. Macrophotograph in XPL. Imaged area 22mm by 38mm. See post of July 15, 2012 for detailed description of rock body and higher-magnification photomicrographs.

Many thanks to Prof. Michael Davis of the University of California at Riverside for the specimen. 

Saturday, July 21, 2012

Cumulate olivine and interstitial pyroxene in igneous peridotite

Click on image to enlarge.          Specimen: Michael Davis          Photo: Dan Snyder
Olivine (left and right) with interstitial pyroxene (center). Note that opaque secondary mineral(s) occupying fractures in olivine do not extend through pyroxene. Montserate Mountain, San Diego County, California. XPL. Imaged area 1.3 mm x 2 mm.

Click on image to enlarge.
 Plane-polarized light image of same area shown above. Fractures appear to end at the olivine/pyroxene border. In the center of the image, the pyroxene is colored by parallel streaks of a red material, probably iddingsite, a late magmatic alteration product of olivine.

Click on image to enlarge.
Higher-magnification (10X objective) view of center of previous image. PPL.  Imaged area 0.54 mm by 0.8 mm.

Click on image to enlarge.
Higher-magnification (40X objective) view of center of previous image. PPL. Imaged area 0.13 mm by 0.2 mm.

Click on image to enlarge.
Optical Scan of remnants of hand specimen after removing material for billet for thin section. Imaged area 54 mm by 51 mm.


Click on image to enlarge.
Optical scan of outside of hand specimen minus billet material. Red material appears to be iddingsite. Imaged area 57 mm by 51 mm.



Many thanks to Prof. Michael Davis of the University of California at Riverside for the specimen.

Tuesday, April 10, 2012

Serpentinized Trinity peridotite

Click on image to enlarge.   Specimen: Michael Davis   Image: Dan Snyder
Optical scan of sawed surface of a small hand specimen of serpentinized Trinity peridotite. A 6-mm-thick slice of this specimen crumbled easily with the fingers, and thus the specimen was too fragile to use for a thin section. Olivine has largely been altered to yellowish-gray chrysotile serpentine, which also occupies some of the smaller fractures. Chrysotile has a waxy luster which, although not apparent in this image, shows up well on the hand specimen.  Dark linear features are earlier-formed fracture fillings of the antigorite or lizardite varieties of serpentine. Dark, rounded masses are relict or pseudomorphosed pyroxene. According to Quick (1981)*, the Trinity peridotite is highly serpentinized, except where glaciation has exposed large outcrops of relatively unserpentinized peridotite.  Eastern Klamath Mountains, northern California.  Imaged area 4.75 cm by 5.54 cm.

Excerpt from USGS Open File of02-490 s1

Hess (1989)* states the areal extent of the Trinity peridotite incorrectly as 3,700 sq. km. He cites Quick (1981) as the source. Quick, however does not give a figure for the areal extent of the peridotite outcrop. He states only that "Contiguous outcrops of ultramafic rocks occur over an area about 50 km wide and 75 km long." (Quick, 1981)**. It appears that Hess multiplied 50 by 75 and got 3,750, then dropped the 50 to avoid the impression of spurious accuracy. A glance at the map shows that this figure doesn't account for the various plutons lying within the contiguous area of peridotite, and that the actual areal extent of the peridotite itself is more like 1,500 sq. km.  I did a point count on graph paper, which resulted in an area of 1,237 sq. km.



* Hess, Paul C., 1989, Origins of Igneous Rocks, p. 80.

**Quick, James E., 1981. Petrology and petrogenesis of the Trinity Peridotite, an upper mantle diapir in the Eastern Klamath Mountains, northern California. Journal of Geophysical Research, v. 86, No. B12, p. 11,838.


Many thanks to Professor Michael Davis, of the University of California at Riverside, for the specimen.




The fibrous structure of chrysotile, the asbestiform variety of serpentine, can be seen clearly a thin chip of the mineral at 100x (10x objective) in a microscope. The dark strips at the top and bottom of the chip are remnants of the fracture wall to which it was anchored, and the dark horizontal strip in the center may be a cross-section of an antigorite vein occupying the center of the fracture. Plane polarized light. Length of chip ~0.5 mm.


Monday, April 9, 2012

Rounded olivine grains in peridotite of the Los Pinos pluton.

Click on image to enlarge.   Sample: Michael Davis   Image: Dan Snyder
   Rounded olivine grains surrounded by amphibole. The Los Pinos pluton is one of several gabbroic plutons intruding the Peninsular Ranges batholith in the southernmost part of California. "Olivine and amphibole...are the dominant phases and form up to 88% of the rock." (Walawender, 1976)*. Walawender describes the petrogenesis of the peridotite as an example of Bowen's classic reaction series. Olivine was first mineral to solidify from melt, along with minor plagioclase (not shown in this image). Outer parts of olivine grains were resorbed by melt as pyroxene (not shown) solidified. Amphibole solidfied last and occupied interstices between other minerals. Red material in large grain at center is iddingsite, occupying part of an irregular fracture.  Los Pinos Mountain, Peninsular ranges, San Diego County, California. XPL. Imaged area 2.7mm by 4mm.

See post of December 17, 2012 for a macrophotograph of the entire thin section.

Many thanks to Professor Michael Davis, of the University of California at Riverside, for the specimen.

Click on image to enlarge.   Sample: Michael Davis   Image: Dan Snyder
   PPL image of same area as above. Dark smudges in amphibole are made up of "aligned, rod-like, opaque minerals" (Walawender, 1976)*.


* Walawender, M. J, 1976. Petrology and Emplacement of the Los Pinos Pluton, southern California. Canadian Journal of Earth Sciences, v. 13, pp. 1288-1300.

Friday, June 10, 2011

Pyroxene grains and pseudomorphs in Josephine serpentinized peridotite.

Click on image to enlarge.          Photo © Daniel R. Snyder
In this specimen,  A few very small remnants of olivine (bright-colored grains) can be seen around the image, but almost all of the olivine has been altered to serpentine. I collected this specimen on the border between the Josephine peridotite and the Onion Camp complex of Yule et al. (2006)*. I decided to call it Josephine peridotite for two reasons: 1. There is little evidence of shearing, and 2. Many large pyroxene grains still persist, and large serpentine pseudomorphs after pyroxene are distributed throughout the specimen. The large gray pyroxene grain at the left side of the image above still appears to be mostly pyroxene, while the broken grain in the center has been altered to bastite-texture serpentine. Hourglass-texture serpentine, probably an alteration product of olivine, occupies the rest of the image. Klamath Mountains, Josephine County, southwest Oregon, XPL. Imaged area 2.7 mm x 4 mm.

In the image below, the white spots on the large hand specimen are reflections from the surfaces of platy pseudomorphs after pyroxene; gray-green grains are pyroxene. Note that there appears to be more remnant pyroxene than pseudomorphosed pyroxene. The brown mesostatis is serpentine. The surface of the small hand specimen has been rough polished, showing dark grains of pyroxene. Lighter gray areas are serpentinized pyroxene grains (pseudomorphs). Scale is in centimeters.

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

*Yule, J. D., Saleeby, J. B., and Barnes, C. G., 2006, A rift-edge facies of the late Jurassic Rogue-Chetco arc and Josephine ophiolite, Klamath Mountains, Oregon, in Snoke, A. W. and Barnes, C.G., eds., Geological studies in the Klamath Mountain province, Californa and Oregon: A volume in honor of William P. Irwin: Geological Society of America Special Paper 410, p. 53-76.

Monday, June 6, 2011

Peridotite in advanced stage of serpentinization - Onion Camp complex, Oregon

Click on image to enlarge.         Photo © Daniel R. Snyder
The serpentinized peridotite of the Onion camp complex, which is in contact with the variably serpentinized Josephine peridotite, is described by Yule et al. (2006)* as "highly serpentinized and sheared dunite, harzburgite, and sparse websterite....".  In the center of the image above, a pyroxene grain has been pseudomorphosed, probably by an amphibole mineral, with the chain structure preserved as parallel strands of the replacement mineral. A large serpentine pseudomorph after olivine occupies the center of the left side of the image, and a less obvious pseudomorph is at the upper right. Elsewhere in the image, serpentine is ubiquitous. Klamath Mountains, Josephine County, southwest Oregon. XPL. Digital mosaic, imaged area 3.6 mm x 6 mm.

Click on image to enlarge.          Photo © Daniel R. Snyder
Hand samples of serpentinized peridotite of the Onion Camp complex. Smaller sample on right has been rough polished on cut surface. Note hematite coating on left sides of both samples. Scale in centimeters.


*Yule, J. D., Saleeby, J. B., and Barnes, C. G., 2006, A rift-edge facies of the late Jurassic Rogue-Chetco arc and Josephine ophiolite, Klamath Mountains, Oregon, in Snoke, A. W. and Barnes, C.G., eds., Geological studies in the Klamath Mountain province, Californa and Oregon: A volume in honor of William P. Irwin: Geological Society of America Special Paper 410, p. 53-76.

Sunday, May 29, 2011

Second alteration cycle - serpentine altering to anthophyllite (Presque Isle peridotite)

Click on image to enlarge.          Photo © Daniel R. Snyder
The grain shown in this image, originally olivine, was altered to serpentine, most of which has been altered in turn to anthophyllite. That is, I thought it was anthophyllite, but then I read Michael Lewan's (1972)* M. S. thesis, in which he reported NO anthophyllite in the three samples of Presque Isle peridotite for which he carried out modal analysis. However, all three samples contained small amounts of chlorite (7.3, 7.1, and 5.4 percent volume. I've never seen chlorite that looks like this, but maybe... If you know, please send me a comment.

Tiny red or orange anthophyllite(?) crystals occupy most of the former olivine grain, except for the two remaining areas of serpentine, gray-green in the XPL image above (lower left and upper right). The image below, also XPL, shows most of the anthophyllite(?) crystals (those aligned from upper left to lower right, or vice versa) at extinction - as extinct as they get. The serpentine areas show more clearly in this view, while the anthophyllite(?) crystals that are "at extinction" have dark outlines of varying thickness.

Click on image to enlarge.          Photo © Daniel R. Snyder
In the PPL image below, the serpentine areas are relatively featureless, while elsewhere the elongated crystals of anthophyllite(?) show distinct outlines. Yellow-orange color in PPL image is due to iron-oxide staining from hematite. Black spots are magnetite. Presque Isle peridotite, Marquette County, northern Michigan. Imaged area 0.5 mm x 0.8 mm.

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

*Lewan, Michael D., 1972, Metasomatism and Weathering of the Presque Isle Serpentinized Peridotite, Marquette, Michigan, unpublished M.S. thesis, Michigan Technological University.