首页> 外文期刊>Acta Geologica Sinica >Geochemistry of Ore Fluids and Rb-Sr Isotopic Dating for the Wulong Gold Deposit in Liaoning, China
【24h】

Geochemistry of Ore Fluids and Rb-Sr Isotopic Dating for the Wulong Gold Deposit in Liaoning, China

机译:辽宁五龙金矿床的矿床地球化学特征和Rb-Sr同位素定年

获取原文
获取原文并翻译 | 示例
       

摘要

On the basis of detailed geological studies of the Wulong gold deposit, three metallogenic stages can be identified. With quartz fluid inclusions as an object of study, the authors investigated phase characteristics, compositional variations, temperature and pressure changes, fluid evolution, Pb isotope tracing and Rb-Sr isotopic dating of fluid inclusions entrapped in the above three metallogenic stages. The results show that Na~+ is decreased obviously with metallogenic evolution, while K~+ and other cations and gas compositions (H_2, CO, CH_4 and CO_2) are increased slightly, and that the temperature and salinity vary in a pulsating manner along with the metallogenic evolution. Inverse calculation of hydrogen and oxygen isotopes indicate that at the first metallogenic stage the fluids were magmatic water, at the second stage they were dominated by magmatic water with a minor amount of meteoric water involved, and at the third stage, i.e., the final stage of metallogenesis, the fluids were composed completely of meteoric water. Its Pb isotopic composition implicates that the ore lead has some affinities with the lead in the Sanguliu granite, but the linear array of the ore-lead isotopic data reflects a mixing source of two end members. It can be deduced that the ore-forming materials and magma were both derived mainly from the same magma source region at depths. The Rb-Sr isotopic ages of the fluid inclusions are 112.2+3.2 Ma, indicating that the Wulong gold deposit was formed during the Yanshanian period.
机译:根据对五龙金矿床的详细地质研究,可以确定三个成矿阶段。作者以石英流体包裹体为研究对象,研究了在上述三个成矿阶段夹带的流体包裹体的相特征,成分变化,温度和压力变化,流体演化,铅同位素示踪和Rb-Sr同位素定年。结果表明,随着成矿作用的发展,Na〜+明显降低,而K〜+及其他阳离子和气体组成(H_2,CO,CH_4和CO_2)略有增加,并且温度和盐度随着脉动的变化而变化。成矿演化。氢和氧同位素的反计算表明,在第一成矿阶段,流体是岩浆水,在第二阶段,流体以岩浆水为主,涉及少量的陨石水;在第三阶段,即最终阶段从成矿的角度来看,流体完全由陨石水组成。它的Pb同位素组成暗示了矿石铅与Sanguliu花岗岩中的铅有一定亲和力,但是矿石铅同位素数据的线性阵列反映了两个端部成员的混合源。可以推断成矿物质和岩浆都主要来源于同一深度的岩浆源区。流体包裹体的Rb-Sr同位素年龄为112.2 + 3.2 Ma,表明五龙金矿床形成于燕山期。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号