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广东省阳山县青草塘地区地质化探特征及铅—多金属矿成矿远景分析
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作者 李奕旺 陆玉德 +1 位作者 陈金声 姚亚明 《四川建材》 2012年第6期123-125,共3页
青草塘地区位于国家重点攻关的南岭成矿带与郴怀成矿带的交汇部位,根据该区铅-多金属矿成矿地质特征、矿化信息、化探信息及找矿潜力分析,圈定了下深埪-燕岩山铅多金属成矿远景地段。
关键词 青草塘地区 铅-多金属矿 地质化探特征 成矿远景地段
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安徽省马山铅—钼多金属矿地质特征及成矿规律 被引量:2
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作者 张燕 《世界有色金属》 2019年第11期293-293,295,共2页
安徽省马山铅~钼多金属矿位于华北板块东南缘与扬子板块衔接部位。矿体位于小红山~洼子陈断裂的西段,主要赋存于含金多金属石英脉中。围岩蚀变有高岭土化、硅化、褐铁矿化等。矿床成因类型为中温热液型。
关键词 马山-多金属矿 中温热液型
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Separation of sulfide lead-zinc-silver ore under low alkalinity condition 被引量:10
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作者 孙伟 苏建芳 +1 位作者 张刚 胡岳华 《Journal of Central South University》 SCIE EI CAS 2012年第8期2307-2315,共9页
A complex lead-zinc-silver sulfide ore containing 2.98% Pb, 6.49% Zn and 116.32×10^-4 % Ag (mass fraction) from Yunnan Province, China, was subjected to this work. Research on mineral processing was conducted a... A complex lead-zinc-silver sulfide ore containing 2.98% Pb, 6.49% Zn and 116.32×10^-4 % Ag (mass fraction) from Yunnan Province, China, was subjected to this work. Research on mineral processing was conducted according to the properties of the lead-zinc-silver ore. Under low alkalinity condition, the lead minerals are successfully separated from the zinc minerals with new reagent YZN as zinc depressant, new reagent BPB as lead collector, CuSO4 as zinc activator and ethyl xanthate as zinc collector. The associated silver is mostly concentrated to the lead concentrate. With the process utilized in this work, a lead concentrate of 51.90% Pb with a recovery of 82.34% and a zinc concentrate of 56.96% Zn with a recovery of 81.98% are produced. The silver recovery in the lead concentrate is 80.61%. Interactions of flotation reagents with minerals were investigated, of which the results indicate that the presence of proper amount of Na2S can precipitate Pb^2+ and has a sulfidation on oxidized lead minerals. The results also show that NazCO3 and YZN used together as combined depressants for sphalerite can signally improve the depressing effect of new reagent YZN on sphalerite. 展开更多
关键词 lead-zinc-silver sulfide low alkalinity new flotation reagents lead-zinc separation silver recovery
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Late Mesozoic magmatism and tectonic evolution in the Southern margin of the North China Craton 被引量:16
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作者 GAO XinYu ZHAO TaiPing 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第11期1959-1975,共17页
Late Mesozoic granitic magmatism(158–112 Ma) are widespread in the southern margin of the North China Craton(NCC), contemporary with many world-class Mo-Au-Ag-Pb-Zn polymetallic deposits. There are abrupt changes in ... Late Mesozoic granitic magmatism(158–112 Ma) are widespread in the southern margin of the North China Craton(NCC), contemporary with many world-class Mo-Au-Ag-Pb-Zn polymetallic deposits. There are abrupt changes in the elements and isotopic compositions of these granites at about 127 Ma. The early stage(158–128 Ma) granites show slightly or no negative Eu anomalies, large ion lithophile elements enriched and heavy REE depleted(such as Y and Yb), belonging to typical I-type granite. The late stage(126–112 Ma) granites are characterized by A-type and/or highly fractionated I-type granite, with higher contents of SiO2, K2 O, Y, Yb and Rb/Sr ratio and lower contents of Sr, δEu value and Sr/Y ratio than that of the early-stage granites.Moreover, the whole rock Nd and Hf isotopic compositions of the granites younger than 127 Ma show more depleted than those of the older one. The two stages of Late Mesozoic granites were derived from a source region of the ancient basement of the southern margin of the NCC incorporated the mantle material. The late stage(126–112 Ma) granites contain more fractions of mantle material with depleted isotopic composition than the early ones. The granites record evidence for a strong crust-mantle interaction. They formed in an intracontinental extensional setting which was related to lithospheric thinning and asthenospheric upwelling in this region, which was possibly caused by westward subduction of the Paleo-Pacific plate. 127 Ma is an critical period of the transformation of the tectonic regime. 展开更多
关键词 Southern margin of the North China Craton Late Mesozoic GRANITE ORIGIN Tectonic evolution
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