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姜瑛  刘先利 《矿产与地质》1998,12(5):313-317
在辽东半岛元古宙陆间裂谷某些矿床岩石矿物研究中,发现北瓦沟铅锌矿床含有一定量的块硫锑铅矿,常与方铅矿、黄铁矿、脆硫锑铅矿、硫锑铁矿、金银矿等共生,呈连晶或包裹产出,且与金银矿关系密切。当铅锌矿出现块硫锑铅矿物时,在镜下且见有韧性变形特征时,必见金银产出,其金银含量与块硫锑铅矿含量呈消长关系。因此,认为块硫锑铅矿的产出是寻找金银矿床的标志  相似文献   
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The Bodie mining district in Mono County, California, is zoned with a core polymetallic-quartz vein system and silver- and gold-bearing quartz-adularia veins north and south of the core. The veins formed as a result of repeated normal faulting during doming shortly after extrusion of felsic flows and tuffs, and the magmatic-hydrothermal event seems to span at least 2 Ma.Epithermal mineralization accompanied repeated movement of the normal faults, resulting in vein development in the planes of the faults. The veins occur in a very large area of argillic alteration. Individual mineralized structures commonly formed new fracture planes during separate fault movements, with resulting broad zones of veinlets growing in the walls of the major vein-faults. The veinlet swarms have been found to constitute a target estimated at 75,000,000 tons, averaging 0.037 ounce gold per ton. The target is amenable to bulkmining exploitation.The epithermal mineralogy is simple, with electrum being the most important precious metal mineral. The host veins are typical low-sulfide banded epithermal quartz and adularia structures that filled voids created by the faulting. Historical data show that beneficiation of the simple vein mineralogy is very efficient. On the cover: Southeast view of Bodie mining district in Mono County, California, one of the more famous pioneer epithermal gold producers in the western U.S. Recent exploration drilling suggests an additional resource of 2 million ounces of gold. The townsite is at the intersection of roads near the center of the photo. The foreground is mainly tuff breccia of the Bodie Hills volcanic field. Arcuate lines in the valley beyond the hills are old Mono Lake shorelines. The White Mountains form the ridge on the skyline. Photo by Frank Kleinhampl, about 1970.  相似文献   
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山门银金矿铅同位素地球化学研究   总被引:2,自引:0,他引:2  
在研究中将矿石铅、岩石铅同位素数据投影于Zartman铅构造模式图中。矿石铅数据点都位于造山带和地幔铅演化线之间,大洋火山岩范围内,更靠近地幔铅演化曲线,说明矿石铅主要来自地幔;岩石铅数据点都落在造山带和上地壳演化线之间,说明岩石铅来自地壳物质重熔或同熔产生的花岗岩类。从而认为山门矿床成矿物质主要来自赋矿地层。矿区印支期或印支燕山期花岗岩是该区老地层重熔形成。该花岗岩的热液活动对山门矿床的最终形成具有重要作用。  相似文献   
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