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Neal, Clive R., Taylor, Lawrence A. (1991) Evidence for metasomatism of the lunar highlands and the origin of whitlockite. Geochimica et Cosmochimica Acta, 55 (10) 2965-2980 doi:10.1016/0016-7037(91)90462-e

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Reference TypeJournal (article/letter/editorial)
TitleEvidence for metasomatism of the lunar highlands and the origin of whitlockite
JournalGeochimica et Cosmochimica Acta
AuthorsNeal, Clive R.Author
Taylor, Lawrence A.Author
Year1991 (October)Volume55
Page(s)2965-2980Issue10
PublisherElsevier BV
DOIdoi:10.1016/0016-7037(91)90462-eSearch in ResearchGate
Mindat Ref. ID343449Long-form Identifiermindat:1:5:343449:3
GUIDd7d85e27-d3b1-4cd3-9378-a4ff955fe681
Full ReferenceNeal, Clive R., Taylor, Lawrence A. (1991) Evidence for metasomatism of the lunar highlands and the origin of whitlockite. Geochimica et Cosmochimica Acta, 55 (10) 2965-2980 doi:10.1016/0016-7037(91)90462-e
Plain TextNeal, Clive R., Taylor, Lawrence A. (1991) Evidence for metasomatism of the lunar highlands and the origin of whitlockite. Geochimica et Cosmochimica Acta, 55 (10) 2965-2980 doi:10.1016/0016-7037(91)90462-e
In(1991, October) Geochimica et Cosmochimica Acta Vol. 55 (10) Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Albee (1970) Microprobe investigations of Apollo 11 samples , 135
Blanchard (1977) Chemistry of ANT-suite and felsite clasts from consortium breccia 73215 and gabbroic anorthosite 79215 , 2507
Brown (1971) Picrite basalts, ferrobasalts, feldspathic norites,and rhyolites in a strongly fractionated lunar crust , 583
Chou (1975) Volatiles on the surface of Apollo 15 green glass and trace element distribution among Apollo 15 soils , 1701
Dickinson (1983) Lunar Planet. Sci. XIV Role of whitlockite and apatite in lunar felsite (abstr.) , 1158
Frondel (1975)
Goodrich (1985) An apatite rich, ferroan, mafic lithology from lunar meteorite ALHA81005 90, C405
Goodrich (1986) Alkali norite, Troctolites, and VHK mare basalts from breccia 14304 91, D305
Harrison (1981) Amer. Mineral. Partitioning of REE between minerals and coexisting melts during partial melting of garnet lherzolite 66, 242
Hess (1974) Lunar Planet. Sci. V Element fractionation between immiscible melts (abstr.) , 328
Hess (1975) Residual products of fractional crystallization of lunar magmas: An experimental study , 895
Hess (1990) Lunar Planet. Sci. XXI Phosphate equilibria in lunar basalts (abstr.) , 505
James (1987) Petrology and geochemistry of alkali gabbronorites from lunar breccia 67975 92, E314
Keil (1971) Mineralogy, petrology,and chemistry of some Apollo 12 samples , 319
Lindstrom (1984) Magnesian anorthosites and associated troctolites and dunite in Apollo 14 breccias 89, C41
Lindstrom (1985) Lunar Planet. Sci. XVI REE in phosphates from lunar highland cumulates: An ion probe study(abstr.) , 493
Lindstrom (1991) Lunar Planet. Sci. XXII Ion microprobe analyses of REE in minerals from Apollo 15 Quartz Monzodiorites , 819
Lu (1989) Basalts and gabbros from Mare Crisium: Evidence for extreme fractional crystallization , 199
Marvin (1990) Lunar Planet. Sci. XXI New pieces of the lunar granite-quartz monzodiorite puzzle (abstr.) , 738
McKay (1987) Lunar Planet. Sci. XVIII Whitlockite/melt partitioning and Henry's Law: Shergotty late-stage minerals (abstr.) , 625
Menzies (1987)
Meyer (1970) Meteoritics High potassium, high phosphorus glass as an important rock-type in the Apollo 12 soil samples(abstr.) 5, 210
Meyer (1971) Mineralogy, chemistry, and origin of the KREEP component in soil samples from the ocean of storms , 393
Meyer (1975) The source of sublimates on the Apollo is green and Apollo 17 orange glass samples , 1673
Morris (1990) Highly evolved and ultramafic lithologies from Apollo 14 soils , 61
Murrell (1984) Lunar Planet. Sci. XV Pu-REE-Y partitioning between apatite and whit lockite , 579
Neal (1988) Lunar Planet. Inst. Tech. Rpt. The splitting of KREEP into identifiable components: The K-Frac/REEP-Frac hypothesis(abstr.) 89-03, 94
Neal (1990) Lunar Planet. Sci. XXI The dichotomy between primitive highland cumulates and evolved interstitial whitlockites: The process of REEP-Fraction metasomatism (abstr.) , 863
Neal (1987) Lunar Planet. Sci. XVIII Petrology and geochemistry of highland clasts from Apollo 14 breccias 14303,14305, and 14321 (abstr.) , 708
Neal (1990) Lunar Planet. Sci. XXI An Apollo 17 safari: Exciting new clasts from breccia “pull-apart” efforts(abstr.) , 859
Rutherford (1976) The chemistry, origins, and petrogenetic implications of lunar granite and monzonite , 1723
Shervais (1990) Lunar Planet. Sci. XXI The western highland province at the Apollo 14 site (abstr.) , 1140
Shervais (1991) Lunar Planet. Sci. XXII Auto-metasomatism of the western lunar highlands: Result of closed system fractionation and mobilization of a KREEPy trapped liquid , 1237
Shervais (1984) Pristine highland clasts in breccia 14305: Petrology and geochemistry 89, C25
Taylor (1980) Silicate liquid immiscibility, evolved lunar rocks,and the formation of KREEP , 339
Taylor (1971) Opaque mineralogy and textural features of Apollo 12 samples and a comparison with Apollo 11 rocks , 855
Warren (1988) Lunar Planet. Inst. Tech. Rept. KREEP: Major-element diversity, trace-element uniformity (almost) (abstr.) 89-03, 149
Warren (1983) Seventh foray: Whitlockiterich lithologies, a diopside-bearing troctolitic anorthosite, ferroananorthosites, and KREEP 88, B151
Warren (1987) Pristine moon rocks: A “large” felsite and a metal-rich ferroan anorthosite 92, E303


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