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21.
Miduk hypogene and supergene porphyry Cu–Mo mineralization occurs within the Miocene porphyritic quartz–diorite and host Eocene plagioclase–hornblende phyric andesitic pyroclastic and flow sequence. Both the host rocks were extensively altered by hydrothermal fluids to dominantly potassic, phyllic, and argillic with interstitial to distal propylitic types. 相似文献
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《Geofísica Internacional》2014,53(2):199-210
Geophysical methods are widely used in mineral exploration. This paper discusses the results of geological and geophysical studies in supergene manganese deposits of southern Brazil. Mineralized zones as described in geological surveys were characterized as of low resistivity (20Ω.m) and high chargeability (30ms), pattern found also in oxides and sulfite mineral deposits. Pseudo-3D modeling of geophysical data allowed mapping at several depths. A relationship between high chargeability and low resistivity may define a pattern for high grade gonditic manganese ore. Large areas of high chargeability and high resistivity may result in accumulation of manganese and iron hydroxides, due to weathering of the gonditic ore, dissolution, percolation and precipitation. 相似文献
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石缸河锡矿床在空间上,时间上和成因上与志本山花岗岩演化分异晚期形成的浅色细粒白云母花岗岩有着密切联系,属岩浆期后热液矿床。 相似文献
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陕西商县蔷薇辉石玉石矿床地质、工艺性质及成因 总被引:1,自引:0,他引:1
陕西商县蔷薇辉石(粉翠)矿床是陕西省首次发现并评价的玉石矿床。蔷薇辉石产于宽坪群四岔口组中段下部二云石英片岩所夹的含锰石英白云石大理岩、含锰石英岩等含锰岩中。矿体既成层分布又相对集中。粉翠玉料质优且加工工艺性能良好。蔷薇辉石矿床的形成主要经历了沉积期和区域变质期两大阶段。成因类型属变质岩型低温变质相蔷薇辉石矿床。 相似文献
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青海省锡铁山Sedex型铅锌矿床成矿流体来源及演化: 流体包裹体及同位素地球化学证据 总被引:2,自引:1,他引:2
锡铁山铅锌矿床产于青海省柴达木盆地北缘早古生代裂陷的中基性火山-沉积岩系中,是我国规模最大的铅锌矿床之一.流体包裹体的温度、盐度、气液相成分测试以及同位素组地球化学研究证明锡铁山矿床形成于喷流沉积系统.管道相成矿流体以深源为主,深源流体的CO_2等气相组分溢出及深源流体与海水的混合作用导致了成矿物质沉淀,层状矿体中石英岩是管道相向SE方向位移、喷流的结果,锡铁山铅锌矿床是VMS型与Sedex型系统的复合或过度. 相似文献
28.
Information about the magmatic to hydrothermal transition is preserved in late-stage features of quartz phenocrysts and endoskarn alteration in some Cu–Zn skarn deposits such as the Empire Mine in Idaho. Important features include: (1) quartz phenocrysts with strong resorption textures such as vermicular zones of igneous groundmass cutting primary quartz cathodoluminescence banding, (2) anomalous amounts of endoskarn (more than 50% of mineralized rock), (3) high F activities as evidenced by fluorite as an accessory mineral in igneous rocks, in alteration assemblages, and in fluid inclusions and by high F in hydroxyl sites in igneous biotite and amphibole, and (4) direct association of Zn, which normally is deposited distally at low temperature, with Cu in proximal locations and in endoskarn. These features are explained by the following model: (1) F lowers the solidus temperature of the magma, thus changing the timing, temperature, and duration of hydrothermal fluid exsolution. (2) Upon magmatic vapor saturation the F-rich hydrothermal fluids form bubbles that adhere to quartz phenocrysts and chemically corrode/tunnel into the quartz forming vermicular resorption textures. (3) F-rich hydrothermal fluids also promote the formation of endoskarn; silicic rocks are attacked by F-rich fluids in the same sense that carbonate wall rocks are dissolved by weakly to moderately acidic hydrothermal fluids. (4) Low fluid exsolution temperature facilitated by high F activity promotes high Zn/Cu ratios in proximal locations due to the solubility of Zn relative to Cu at lower temperatures. This model may be applicable at other localities such as the world-class Cu–Zn skarn Antamina mine, as well as some tin and rapakivi granites. 相似文献
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