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基于重-浮联选的某含金白钨矿选矿试验研究 被引量:1
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作者 鱼博 程启刚 +3 位作者 王宇斌 王鑫 李亮 何廷树 《中国钼业》 2022年第6期32-36,40,共6页
某含金白钨矿中钨主要赋存于白钨矿中,金主要赋存在伴生的黄铁矿中。白钨矿与非金属矿呈半规则连生或包含关系且矿物之间镶嵌紧密,属难选钨矿石。针对该矿石性质,研究采用粗磨抛尾-分级重选-浮选除硫的联合工艺流程,闭路试验可获得含WO_... 某含金白钨矿中钨主要赋存于白钨矿中,金主要赋存在伴生的黄铁矿中。白钨矿与非金属矿呈半规则连生或包含关系且矿物之间镶嵌紧密,属难选钨矿石。针对该矿石性质,研究采用粗磨抛尾-分级重选-浮选除硫的联合工艺流程,闭路试验可获得含WO_(3)的品位为60.09%、回收率为76.31%的钨精矿,有害元素S的品位为0.33%,达到了II级钨精矿的标准。试验还可获得品位为44.83%、回收率为45.50%的I级硫精矿,硫精矿中Au的品位为8.87 g/t,回收率为66.53%。研究指标较为理想,对类似矿石有用组分的综合回收有一定的参考意义。 展开更多
关键词 含金白钨矿 重-浮联选 伴生多金属矿 综合回收
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Geological characteristics and mineralization setting of the Zhuxi tungsten(copper) polymetallic deposit in the Eastern Jiangnan Orogen 被引量:25
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作者 CHEN GuoHua SHU LiangShu +2 位作者 SHU LiMin ZHANG Cheng OUYANG YongPeng 《Science China Earth Sciences》 SCIE EI CAS CSCD 2016年第4期803-823,共21页
The Zhuxi ore deposit is a super-large scheelite(copper) polymetallic deposit discovered in recent years. It grew above copper/tungsten-rich Neoproterozoic argilloarenaceous basement rocks and was formed in the contac... The Zhuxi ore deposit is a super-large scheelite(copper) polymetallic deposit discovered in recent years. It grew above copper/tungsten-rich Neoproterozoic argilloarenaceous basement rocks and was formed in the contact zone between Yanshanian granites and Carboniferous-Permian limestone. Granites related to this mineralization mainly include equigranular, middle- to coarse-grained granites and granitic porphyries. There are two mineralization types: skarn scheelite(copper) and granite scheelite mineralization. The former is large scale and has a high content of scheelite, whereas the latter is small scale and has a low content of scheelite. In the Taqian-Fuchun Basin, its NW boundary is a thrust fault, and the SE boundary is an angular unconformity with Proterozoic basement. In Carboniferous-Permian rock assemblages, the tungsten and copper contents in the limestone are both very high. The contents of major elements in granitoids do not differ largely between the periphery and the inside of the Zhuxi ore deposit. In both areas, the values of the aluminum saturation index are A/CNK>1.1, and the rocks are classified as potassium-rich strongly peraluminous granites. In terms of trace elements, compared to granites on the periphery of the Zhuxi ore deposit, the granites inside the Zhuxi ore deposit have smaller d Eu values, exhibit a significantly more negative Eu anomaly, are richer in Rb, U, Ta, Pb and Hf, and are more depleted in Ba, Ce, Sr, La and Ti, which indicates that they are highly differentiated S-type granites with a high degree of evolution. Under the influence of fluids, mineralization of sulfides is evident within massive rock formations inside the Zhuxi ore deposit, and the mean SO_3 content is 0.2%. Compared to peripheral rocks, the d Eu and total rare earth element(REE) content of granites inside the Zhuxi ore deposit are both lower, indicating a certain evolutionary inheritance relationship between the granites on the periphery and the granites inside the Zhuxi ore deposit. For peripheral and ore district plutons, U-Pb zircon dating shows an age range of 152–148 Ma. In situ Lu-Hf isotope analysis of zircon in the granites reveals that the calculated e_(Hf)(t) values are all negative, and the majority range from -6 to -9. The T_(DM2) values are concentrated in the range of 1.50–1.88 Ga(peak at 1.75 Ga), suggesting that the granitic magmas are derived from partial melting of ancient crust. This paper also discusses the metallogenic conditions and ore-controlling conditions of the ore district from the perspectives of mineral contents, hydrothermal alteration, and ore-controlling structures in the strata and the ore-bearing rocks. It is proposed that the Zhuxi ore deposit went through a multistage evolution, including oblique intrusion of granitic magmas, skarn mineralization, cooling and alteration, and precipitation of metal sulfides. The mineralization pattern can be summarized as "copper in the east and tungsten in the west, copper at shallow-middle depths and tungsten at deep depths, tungsten in the early stage and copper in the late stage". 展开更多
关键词 Tungsten(copper) polymetallic deposit Late Mesozoic granites Carboniferous-Permian carbonate rocks Skarn mineralization Zhuxi ore deposit Eastern Jiangnan Orogen
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