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首页> 外文期刊>Resource Geology >Ag-Cu-Pb-Bi-S Minerals Newly Discovered from the Ohori Base Metal Deposit, Yamagata Prefecture, NE Japan: Implications for Bi-metallogenesis in the Green-Tuff Region
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Ag-Cu-Pb-Bi-S Minerals Newly Discovered from the Ohori Base Metal Deposit, Yamagata Prefecture, NE Japan: Implications for Bi-metallogenesis in the Green-Tuff Region

机译:日本东北山形县大ori贱金属矿床中新发现的Ag-Cu-Pb-Bi-S矿物:对绿凝灰岩地区双金属成矿的意义

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摘要

The Ohori deposit, one of the base metal deposits in the Green-Tuff region, NE Japan, is composed of two types of mineralization; a skarn-type (Kaninomata orebody) made by the replacement of the Miocene calcareous layer, and a vein-type (Nakanomata orebody). While the ore mineral assemblage of the deposit (chalcopyrite, pyrite, sphalerite and galena) has been known for being rather simple, some Pb-Bi-S minerals have been discovered for the first time in the present study. The minerals mainly occur in the chalcopyrite-rich ores of both orebodies. They essentially belong to the Pb-Bi-S system and contain Cu and Ag in minor amounts, which correspond to the lillianite-gustavite solid solution series (phases Z and X), cosalite, neyite, felbertalite, krupkaite and Bi-bearing galena. The chalcopyrite-rich (Bi-bearing) ores from both orebodies are richer in chalcopyrite, pyrite and chlorite, and have higher homogenization temperatures (>300°C) of fluid inclusions, and higher FeS contents in sphalerite compared to the Bi-free ores. In the Green-Tuff region, Bi-minerals have been reported from many base metal deposits. Most of these Bi-bearing ore deposits are referred to as xenothermal-type deposits, and are characterized by the following common features; composite mineraliza-tion of high- and low-temperatures in the shallower environments, and close relationships with the Tertiary granitic rocks. The whole mineralization at the Ohori deposit also has a similar xenothermal character because of the coexistence of high-temperature chalcopyrite-rich ores with Pb-Bi-S minerals, which were formed by the influence of the Tertiary granitic rocks at a shallow depth.
机译:Ohori矿床是日本东北部Green-Tuff地区的一种贱金属矿床,它由两种类型的矿化组成。通过更换中新世钙质层而制成的矽卡岩型(坎尼玛塔矿体)和静脉型(中泻星矿体)。尽管已知该矿床的矿物矿物组合(黄铜矿,黄铁矿,闪锌矿和方铅矿)非常简单,但在本研究中首次发现了一些Pb-Bi-S矿物。矿物主要存在于两个矿体的富含黄铜矿的矿石中。它们本质上属于Pb-Bi-S体系,并含有少量的Cu和Ag,分别对应于锂铁矿-古斯塔维特固溶体系列(Z和X相),褐云母,方铁矿,黄铁矿,krupkaite和含Bi的方铅矿。与无铋矿石相比,两种矿石中富含黄铜矿的(含铋的)矿石富含黄铜矿,黄铁矿和绿泥石,并且流体包裹体的均质温度更高(> 300°C),闪锌矿中的FeS含量较高。 。在绿色凝灰岩地区,据报道,许多贱金属矿床都有双矿物。这些含铋矿床大多数被称为异热型矿床,具有以下共同特征:浅层环境中高温和低温的复合成矿作用,与第三纪花岗质岩石关系密切。 Ohori矿床的整个矿化也具有相似的异质热特征,因为高温的富含黄铜矿的矿石与Pb-Bi-S矿物并存,这是由浅层第三纪花岗岩岩石的影响形成的。

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