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电气石——成岩成矿作用的灵敏示踪剂
引用本文:蒋少涌,于际民.电气石——成岩成矿作用的灵敏示踪剂[J].地质论评,2000,46(6):594-604.
作者姓名:蒋少涌  于际民
作者单位:南京大学地球科学系成矿作用国家重点实验室,210093
基金项目:国家杰出青年科学基金 (编号49925306),国家重点基础研究项目 (编号G1999043208)
摘    要:本文详细论述了电气石的化学组成(主化学元素、微量元素和稀土元素)和同位素组成H、O、B、Si、Rb/Sr、Sm/Nd、pb/pb和K/Ar)特征,提出电气石可以作为研究成岩成矿作用的一个灵敏示踪剂。利用电气石的主化学元素和微量、稀土元素组成,可以有效指示其形成的物理化学环境,还可以作为一种有用的找矿标志,指标矿化的存在,并可能用于区分矿化类型和矿体规模。电气石的稳定同位素和放射性同位素研究,已经用

关 键 词:电气石  化学组成  示踪剂  成矿作用  成岩作用

Tourmaline--A Sensitive Tracer for Petrogenesis and Minerogenesis
Jiang Shaoyong Yu Jimin Ni Pei Ling HongfeiState Key Laboratory for Mineral Deposits Research.Tourmaline--A Sensitive Tracer for Petrogenesis and Minerogenesis[J].Geological Review,2000,46(6):594-604.
Authors:Jiang Shaoyong Yu Jimin Ni Pei Ling HongfeiState Key Laboratory for Mineral Deposits Research
Institution:Jiang Shaoyong Yu Jimin Ni Pei Ling HongfeiState Key Laboratory for Mineral Deposits Research,Department of Earth Sciences,Nanjing University,Nanjing
Abstract:lourmaime is a complex borosihcate mineral which occurs in many granites, pegmatites, metamorphic and sedimentary rocks and in a variety of hydrothermal ore deposits, especially some massive sulfide deposits, mesothermal Au-Ag and Sn-W deposits. There is a wide variation in chemical compositions of tourmaline from various geological settings, which typically reflect the environments in which tourmaline is crystallized. A large range of trace elements including Cu, Pb, Zn, Ag, Sn, Cr, V, Sr and REE are documented in tourmaline as minor or trace constituents. Their concentration levels and distribution patterns record their paragenetic conditions and are good indicators for petrogenesis, minerogenesis, and miheral prospecting. Stable isotopes of O, H, B and Si in tourmaline are suggested to be good tracers for hydrothermal fluids, fluid -rock interaction and the origin of rocks and ore deposits, and can provide valuable information regarding temperatures of tourmaline formation. The Rb-Sr and Sm-Nd isotopic compositions of tourmaline have major implications for source reservoirs and the nature of hydrothermal fluids, and can yield geological meaningful ages for tourmaline formation and related mineralization. Pb-Pb isotope studies of tourmaline obtained by stepwise Pb leaching techniques have been proven to be a good geochronometer, and K-Ar, 40Ar-39Ar systematics of tourmaline may also be useful for age determinations. Therefore, tourmaline has been used as a sensitive tracer for rock-forming and ore-forming processes, and for tourmalinization dating and associated hydrothermal alteration , mineralization, and metamorphism.
Keywords:tourmaline  chemical compositions  isotopic compositions  petrogenetic and minerogenic environments  tracer
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