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B. F. Leonard

Publications and source records attributed to B. F. Leonard.

At least 19 recordsLinked to original sources

Residence of silver in mineral deposits of the Thunder Mountain caldera complex, Central Idaho, U.S.A.

Silver is an accessory element in gold, antimony, and tungsten deposits of the caldera complex. Most of the deposits are economically of low grade and genetically of xenothermal or epithermal character. Their gold- and silver-bearing minerals are usually disseminated, fine grained, and difficult to study. Sparsely disseminated pyrite and arsenoprite are common associates. Identified silver minerals are: native silver and electrum; the sulfides acanthite, argentite (the latter always inverted to acanthite), and members of the Silberkies group; the sulfosalts matildite, miargyrite, pyrargyrite, argentian tetrahedrite, and unnamed Ag-Sb-S and Ag-Fe-Sb-S minerals; the telluride hessite and the selenide naumannite; halides of the cerargyrite group; and the antimonate stetefeldtite. Suspected silver minerals include the sulfide uytenbogaardtite and the sulfosalts andorite, diaphorite, and polybasite. Electrum, acanthite, and argentian tetrahedrite are common, though nowhere abundant. The other silver minerals are rare. Silver is present as a minor element in the structure of some varieties of other minerals. These include arsenopyrite, chalcopyrite, chalcostibite, covelline, digenite, galena, sphalerite, and stibnite. The search for adventitious Ag in most of these minerals has been cursory. The results merely indicate that elemental silver is not confined to discrete silver minerals and is, therefore, an additional complication for the recovery of silver-bearing material from some deposits. Silver occurs cryptically in some plants of the region. At Red Mountain, for example, the ashed sapwood of Douglas-fir (Pseudotsuga menziesii) contains 2 to 300 ppm Ag. Silver in the ashed wood is roughly 100 times as abundant as it is in soil. The phenomenon, useful in biogeochemical exploration, deserves the attention of mineralogists. ?? 1987 Springer-Verlag.

Mineralogy and Petrology

Relation of uranium to hypogene mineral zoning in the Front Range mineral belt, Colorado

Many of the mining districts of the Colorado Front Range mineral belt contain mesothermal sulfide ores that exhibit a zonal distribution. Present data indicate that in most of the zoned districts pitchblende and/or secondary uranium minerals are most abundant in a transition zone between central areas containing predominantly pyritic gold ores and peripheral areas containing dominantly lead-zinc-silver deposits. Copper in the form of chalcopyrite is also probably more abundant in the transition zone than in adjacent zones. Many mineralized areas in the Front Range mineral belt are roughly co-extensive with and probably related to groups of Tertiary intrusives. The solutions that deposited sulfide and pitchblende in these areas probably were derived from many different types of source magma, but some bostonite magmas were probably particularly important sources of uranium-bearing solutions. At most localities where the relative ages of pitchblende and associated sulfides are known, the pitchblende is early in the paragenetic sequence, and not of intermediate age as suggested by its zonal position. This discrepancy may be the result of overlapping zones of deposition related to adjacent centers of mineralization, to changing environments of deposition within zones during the period of mineralization, or to unknown factors. Uranium is also present in districts in which the dominant mineralization is markedly different from the common pyritic gold-base metal sulfide mineralization. In the Jamestown district uranium appears to be associated'.mainly with fluorspar;, in other districts that exhibit little or no systematic hypogene zoning) it is ubiquitous. If uranium is present in zoned districts, a large proportion of she deposits probably should be in the transition zones. The application of this concept may be a valuable guide in prospecting for uranium.

Arizona;Colorado

Uranium in the metal-mining districts of Colorado

Many varieties of abnormally radioactive rocks and ores have been found in Colorado as a result of more than eight years of geologic studies by the U. S. Geological Survey, but only a small proportion of these contain uranium in sufficient quantities to be of possible commercial interest.

Colorado

Magnetite deposits and magnetic anomalies of the Brandy Brook and Silver Pond belts, St. Lawrence County, New York

This report sets forth the geology and economic possibilities of the Brandy Brook and Silver Pond belts of magnetic anomalies, Cranberry Lake quadrangle, St. Lawrence County, northwestern New York. each belt contains a known magnetite deposit, partly explored through diamond drilling by the U.S. Bureau of Mines. The Brandy Brook Northwest deposit is a body of low-grade to medium-grade ore, possibly of lathlike shape. The Silver Pond deposit has no commercial interest at the moment. One of more promising magnetic anomalies remain to be tested by drilling.

New York