Published February 4, 2005 | Version v1
Miscellaneous

Tomographic location of potential melt-bearing phenocrysts in lunar glass spherules

  • 1. Univ. of Chicago, Chicago, IL (United States)
  • 2. American Museum of Natural History, New York, NY (United States)

Description

Apollo 17 orange glass spherules contain olivine phenocrysts with melt inclusions from depth. Tomography (<2micron/pxl) of >200 spherules located 1 phenocryst. We will try to find melt inclusions and obtain original magma volatiles and compositions. In 1971, Apollo 17 astronauts collected a 10 cm soil sample (74220) comprised almost entirely of orange glass spherules. Below this, a double drive-tube core sampled a 68 cm thick horizon comprised of orange glass and black beads (crystallized equivalents of orange glass). Primitive lunar glass spherules (e.g.-A17 orange glasses) are thought to represent ejecta from lunar mare fire fountains. The fire-fountains were apparently driven by a combination of C-O gas exsolution from orange glass melt and the oxidation of graphite. Upon eruption, magmas lost their volatiles (e.g., S, CO, CO2) to space. Evidence for volatile escape remains as volatile-rich coatings on the exteriors of many spherules. Moreover, it showed that Type I and II Fe-Ni-rich metal particles found within orange glass olivine phenocrysts, or free-floating in the glass itself, are powerful evidence for the volatile driving force for lunar fire fountains. More direct evidence for the volatile mechanism has yet to be uncovered. Issues remaining include: the exact composition of magmatic volatiles; the hypothesized existence of graphite in the magma; the oxygen fugacity of the magma and of the lunar interior. In 1996 reported a single ∼450 micron, equant olivine phenocryst, containing four glassy melt inclusions (or inclusion cores), the largest ∼30micron in size, in a thin section of the 74001/2 drill core. The melt is assumed to sample the parent magma of the lunar basalts at depth, evidenced by the S content of the inclusion (600 ppm) which is 400 ppm greater than that of the orange glass host. Such melts potentially contain a full complement of the volatile components of the parent magma, which can be analyzed by infrared spectroscopy. Although the A17 orange glass magma is thought to derive from ∼ 400 km depth, the calculations imply a 4 km depth of graphite oxidation (and melt saturation in C-O volatiles) during ascent. We have imaged several hundred similar orange glass spherules, from sample 74220,764, using synchrotron x-ray computer-aided microtomography (XRCMT). Our goals: (1) locate similar phenocrysts containing melt inclusions; (2) analyze phenocrysts to understand the evolution of the magma; (3) analyze melt and fluid inclusions using EPMA and FTIR to obtain direct evidence of magmatic volatiles and pristine bulk compositions.

Availability note (English)

Available from Lunar and Planetary Science XXXVI; LPI, Lunar and Planetary Institute; Abstract No. 1505

Additional details

Publishing Information

Imprint Pagination
vp.

Conference

Title
36. Annual Lunar and Planetary Science Conference
Dates
14-18 Mar 2005
Place
League City, TX (United States)

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
42049770
Subject category
S36: MATERIALS SCIENCE; S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
ASTRONAUTS; COATINGS; DRILL CORES; GLASS; GRAPHITE; MAGMA; OLIVINE; ORANGES; OXIDATION; OXYGEN; SATURATION; SOILS; SPECTROSCOPY; SYNCHROTRONS; TOMOGRAPHY
Descriptors DEC
ACCELERATORS; CARBON; CHEMICAL REACTIONS; CYCLIC ACCELERATORS; DIAGNOSTIC TECHNIQUES; ELEMENTS; FOOD; FRUITS; MINERALS; NONMETALS; PERSONNEL; SILICATE MINERALS

Optional Information