Whole-rock geochemical techniques for evaluating hydrothermal alteration, mass changes, and compositional gradients associated with epithermal Au-Ag mineralization

被引:76
作者
Warren, Ian [1 ]
Simmons, Stuart F. [1 ]
Mauk, Jeffrey L. [1 ]
机构
[1] Univ Auckland, Auckland Mail Ctr, Sch Geog Geol & Environm Sci, Auckland 1142, New Zealand
关键词
D O I
10.2113/gsecongeo.102.5.923
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
Volcanic rocks hosting quartz +/- calcite +/- adularia +/- illite epithermal deposits undergo elemental mass changes associated with K metasomatism, K-H metasomatism, and H metasomatism that are developed progressively upward and outward from the site of mineralization as hydrothermal fluid ascends, boils, and cools. Resultant hydrothermal mineral zonation shows increasingly K-rich mineral assemblages with proximity to deposits, thus patterns of K enrichment provide a vector toward those deposits. We describe whole-rock geochemical techniques for identifying these patterns and for evaluating attendant hydrothermal mineral zonation. Whole-rock geochemical anomalies are evaluated by calculating mass changes associated with hydrothermal alteration, using a modified version of Gresens' (1967) equation to compare the composition of altered rocks to fresh-rock equivalents. Hydrothermally altered rocks most affected by K metasomatism will be characterized by the largest K gains and, generally, Na and Ca losses. Mass changes associated with K metasomatism are also evaluated graphically using plots of molar (2Ca + Na + K)/Al versus molar K/Al. Since molar values are used to construct the plot, compositions of altered rocks call be compared to the compositions of primary and secondary K-, Na-, Ca-, and Al-bearing minerals that are located in the same compositional space, allowing identification of important hydrothermal minerals (e.g., adularia, illite, smectite) and alteration processes that are reflected in trends from fresh-rock compositious toward the compositions of hydrothermal minerals. The intensity of K metasomatism, encompassing both K gains and Na and Ca losses, can be represented by the slope of the line between all altered rock composition and the origin (i.e., the Molar K/(2Ca + Na + K) value). Determinations of mass changes in altered rocks surrounding selected epithermal deposits demonstrate the predominance of K metasomatism proximal to, and commonly increasing in intensity toward, mineralized veins. Comparisons of K mass changes to trace element concentrations indicate that the area affected by K metasomatism is more extensive (100s to 1,000s of meters) than that containing anomalous concentrations of precious metals, base metals, and pathfinder elements (10s to 100s of meters); therefore, whole-rock geochemical techniques potentially extend the area over which geochemical targeting may be effective. Data from this study show that intensity of K metasomatism molar K/(2Ca + Na + K) values and concentrations of precious metals and pathfinder elements increase toward ore and are greatest proximal to ore, so that pathfinder element and whole-rock geochemical anomalies are complementary.
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页码:923 / 948
页数:26
相关论文
共 20 条
[1]  
[Anonymous], SOC EC GEOLOGISTS SP
[2]  
Appleyard E.C., 1991, SOMA A PACKAGE FORTR
[3]  
BABCOCK RS, 1973, LITHOS, V6, P279
[4]  
BERGER BR, 1985, SOC EC GEOL REV EC G, V2, P233
[5]   OHAKI-BROADLANDS HYDROTHERMAL AREA, NEW-ZEALAND - MINERALOGY AND RELATED GEOCHEMISTRY [J].
BROWNE, PRL ;
ELLIS, AJ .
AMERICAN JOURNAL OF SCIENCE, 1970, 269 (02) :97-&
[6]  
Buchanan L.J., 1981, GEOLOGICAL SOC ARIZO, V14, P237
[7]   Geology and host-rock alteration of the Henty and Mount Julia gold deposits, western Tasmania [J].
Callaghan, T .
ECONOMIC GEOLOGY AND THE BULLETIN OF THE SOCIETY OF ECONOMIC GEOLOGISTS, 2001, 96 (05) :1073-1088
[8]   SOUTHWEST PACIFIC EPITHERMAL GOLD - A ROCK-GEOCHEMISTRY PERSPECTIVE [J].
CLARKE, DS ;
GOVETT, GJS .
JOURNAL OF GEOCHEMICAL EXPLORATION, 1990, 35 (1-3) :225-240
[9]  
CONARD JE, 1993, GEOCHRONOLOGY SLEEPE
[10]  
Simmons SF., 2005, ECON GEOL, V100, P485, DOI DOI 10.2113/gsecongeo.100.5.1052