MONAZITE PARAGENESIS AND U-PB SYSTEMATICS IN ROCKS OF THE EASTERN MOJAVE DESERT, CALIFORNIA, USA - IMPLICATIONS FOR THERMOCHRONOMETRY

被引:176
作者
KINGSBURY, JA
MILLER, CF
WOODEN, JL
HARRISON, TM
机构
[1] VANDERBILT UNIV,DEPT GEOL,NASHVILLE,TN 37235
[2] US GEOL SURVEY,MENLO PK,CA 94025
[3] UNIV CALIF LOS ANGELES,DEPT EARTH & SPACE SCI,LOS ANGELES,CA 90024
关键词
D O I
10.1016/0009-2541(93)90251-D
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Studies of the paragenesis and U-Pb systematics of monazite in rocks from the eastern Mojave Desert, California, corroborate its potential usefulness as a prograde thermochronometer and in dating granite inheritance. Unmetamorphosed Latham Shale and its equivalents at grades ranging from greenschist to upper amphibolite facies are virtually identical in composition. Monazite is absent in the shale and low-grade schists, but it is abundant in schists at staurolite and higher grades. Lower-grade schists instead include minute Th- and Ce-oxides and unidentified Ce-poor LREE-phosphates that apparently are lower-temperature precursors to monazite. Thus monazite; originates when the pelite passes through lower-amphibolite-facies conditions. Monazites from three Upper Cretaceous granites yield ages that are strongly discordant. Upper intercepts of 1.6-1.7 Ga are similar to those defined by U-Pb data for coexisting zircons and coincide with a period of copious magmatism in the Mojave crust. As the host Upper Cretaceous granitic magmas were all above 700 degrees C, effective closure of the restitic monazites to Pb loss must be well in excess of this temperature. U-Pb compositions of monazite from Proterozoic granitoids and schist also indicate high Pb retentivity. Taken together, these studies support the suggestion that monazite can be an effective prograde thermochronometer. At least in pelites, it is not usually retained as a detrital mineral, but rather forms during moderate-temperature metamorphism. Its U-Pb system should not be reset by subsequent higher-grade metamorphism.
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页码:147 / 167
页数:21
相关论文
共 62 条
[1]  
BENDER EE, 1990, GEOL SOC AM ABSTR, V22, P7
[2]   PB ISOTOPIC COMPOSITION, COLOR, AND MICROSTRUCTURE OF MONAZITES FROM A POLYMETAMORPHIC ROCK IN ANTARCTICA [J].
BLACK, LP ;
FITZ GERALD, JD ;
HARLEY, SL .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1984, 85 (02) :141-148
[3]   MINERALOGICAL AND RADIOMETRIC STUDIES OF MONAZITE AND SPHENE OCCURRENCES IN NAMIB DESERT SOUTH-WEST AFRICA [J].
BURGER, AJ ;
VONKNORR.O ;
CLIFFORD, TN .
MINERALOGICAL MAGAZINE AND JOURNAL OF THE MINERALOGICAL SOCIETY, 1965, 35 (271) :519-&
[4]  
CARL BS, 1991, GEOLOGY, V19, P893, DOI 10.1130/0091-7613(1991)019<0893:WOWMSZ>2.3.CO
[5]  
2
[6]   IDENTIFICATION OF INHERITED RADIOGENIC PB IN MONAZITE AND ITS IMPLICATIONS FOR U-PB SYSTEMATICS [J].
COPELAND, P ;
PARRISH, RR ;
HARRISON, TM .
NATURE, 1988, 333 (6175) :760-763
[7]   RARE-EARTH ELEMENTS IN SILURIAN PELITIC SCHISTS FROM NW MAINE [J].
CULLERS, RL ;
YEH, LT ;
CHAUDHUR.S ;
GUIDOTTI, CV .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1974, 38 (03) :389-400
[8]   NEW RARE-EARTH ELEMENT STANDARDS FOR ELECTRON-MICROPROBE ANALYSIS [J].
DRAKE, MJ ;
WEILL, DF .
CHEMICAL GEOLOGY, 1972, 10 (02) :179-&
[9]   THE RARE-EARTH ELEMENTS IN SEA-WATER [J].
ELDERFIELD, H ;
GREAVES, MJ .
NATURE, 1982, 296 (5854) :214-219
[10]   EXPERIMENTAL CALIBRATION OF PARTITIONING OF FE AND MG BETWEEN BIOTITE AND GARNET [J].
FERRY, JM ;
SPEAR, FS .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1978, 66 (02) :113-117