Allanite-(Ce) from the Eocene Casto granite, Idaho: Response to hydrothermal alteration

被引:62
作者
Wood, SA [1 ]
Ricketts, A [1 ]
机构
[1] Univ Idaho, Dept Geol Sci, Moscow, ID 83844 USA
关键词
allanite-(Ce); monazite-(Ce); hydrothermal alteration; radioactive waste analogue; rare-earth elements; thorium; Casto granite; Idaho;
D O I
10.2113/gscanmin.38.1.81
中图分类号
P57 [矿物学];
学科分类号
070901 ;
摘要
The response of allanite-(Ce) in the Eocene Caste granite of Idaho to hydrothermal activity has been investigated. Unaltered, igneous allanite from the Caste pluton is characterized by a narrow range of compositional variation, with little or no zoning. A representative empirical formula, based on the composition of the least-altered grain, is: (REE0.83Ca1.07Th0.04Mn0.062+) (Ti-0.11(4+) Mg0.042+Fe0.992+Fe0.083+Al1.38) (Si3.00O12) (OH0.95F0.05), where REE represents (La0.14Ce0.41Pr0.05Nd0.17Sm0.03Y0.03). The small amount of observed compositional variation is consistent with the coupled substitutions Ca2+ + Th4+ <-> 2REE(3+) and REE3+ + Fe2+ + Mg2+ <-> Ca2+ + Al3+ + Fe3+. Slightly altered crystals exhibit a rim in which Th is enriched, and La and Ce are depleted. Increasing alteration lead to extensive corrosion and replacement of allanite by fluorite, a REE-, Th- and P-rich phase (probably monazite), and a Tn-rich phase (probably thorianite). In spite of attack by fluoride-rich hydrothermal solutions, the REE and Th originally in allanite were not transported significant distances, but were redeposited locally as secondary phases. The lack of significant REE and Th transport is due to the availability of phosphorus, which allowed the REE to be fixed in a secondary phosphate phase, and the removal of fluoride as fluorite. This work has implications for the behavior of radioactive waste in deeply buried geological repositories upon interaction with heated groundwaters.
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页码:81 / 100
页数:20
相关论文
共 71 条
[1]  
ADAMS JW, 1961, US GEOL SURV PROF C, V424, P292
[2]   THE INSTABILITY OF RHABDOPHANE AND ITS UNIMPORTANCE IN MONAZITE PARAGENESIS [J].
AKERS, WT ;
GROVE, M ;
HARRISON, TM ;
RYERSON, FJ .
CHEMICAL GEOLOGY, 1993, 110 (1-3) :169-176
[3]  
Anderson A.L., 1960, ECON GEOL, V55, P1179
[4]   GRANITIC-ROCKS OF TERTIARY AGE IN THE IDAHO BATHOLITH AND THEIR RELATION TO MINERALIZATION [J].
BENNETT, EH .
ECONOMIC GEOLOGY, 1980, 75 (02) :278-288
[5]  
BENNETT EH, 1983, US GEOL SURV B, V1658, P81
[6]   Redistribution of rare earth elements, thorium, and uranium over accessory minerals in the course of amphibolite to granulite facies metamorphism: The role of apatite and monazite in orthogneisses from southwestern Norway [J].
Bingen, B ;
Demaiffe, D ;
Hertogen, J .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1996, 60 (08) :1341-1354
[7]  
BOATNER LA, 1980, SCI BASIS NUCL WASTE, V2
[8]  
Boynton W.V., 1984, Rare earth element geochemistry, P63, DOI [10.1016/B978-0-444-42148-7.50008-3, DOI 10.1016/B978-0-444-42148-7.50008-3]
[9]  
Brookins D.G., 1984, GEOCHEMICAL ASPECTS
[10]  
Broska I, 1998, GEOL CARPATH, V49, P161