DOI:
矿床地质:1993,Vol.>>Issue(2):120-128

广东河台金矿成矿物理-化学条件及找矿方向
中国地质大学矿产系
Physical-chemical conditions for the ore-forming process of the Hetal gold deposit in Guangdong Province and ore-prospecting directions
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中文摘要:本文通过对河台金矿流体包裹体的研究,从包裹体一般特征,成矿温度、压力,成矿流体特征、来源等方面系统分析了成矿的物理化学条件,并进一步探讨了成矿流体在不同成矿期、不同成矿阶段的演化以及流体的演化在成矿过程中的意义。通过这些研究,结合成矿地质条件、矿床地质特征以及矿物学等方面的研究成果,提出了本区自备找矿方向。
Abstract:Located in Yunkai Mountains, western Guangdong and controlled by a ductile shear zone, the Hetai deposit is an important gold deposit in S6uth China. Fluid inclusion studies show that ore-forming fluids are of the H2O-CO2-NaCl system, and metallogenic environments are noted for moderate to low temperatures(350~220℃), 1ow salinities(3.50~10.50 wt%NaCl), weak acidity(pH = 4.57~4.17), low fO2(10-35~10-44bar), low fS2( (10.7~10-16 bar) and pressures of 1200~1000 bar. Ore-forming fluids are characterized by K+>Na+,Ca2+>>,Mg2+, Cl->>F-, CO2>CH4 and abundant K+, Na+, Cl-, Ca2+ and Mg2+, Ore-forming fluids, derived mainly from metamorphic and magmatic waters, changed gradually in composition from the ductile shearing phase through the gold-quartz stage of the brittle deformation phase to the gold-quartz-sulfide stage. The conversion from ductile deformation to brittle deformation resulted in the mineralization and concentration of gold in the ore district. Great gold-hunting potentiality exists in Yunkai area, where Hetai type” gold deposits, “quartz vein type” gold deposits and “sediment-metamorphic type” gold deposits might be further discovered. The eastern part of the No.11 orebody might extend to a depth of some -400 m and plunge laterally towards the Houjing deposit. Mineralization is poor in the depth of the No.12 orebody of the Houjing deposit and between the Gaocun and the Yunxi deposit; nevertheless, the depth of the No.9 orebody of the Yunxi deposit seems rather promising.
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引用文本:
何文武,张文淮.1993.广东河台金矿成矿物理-化学条件及找矿方向[J].矿床地质,12(2):120~128
.1993.Physical-chemical conditions for the ore-forming process of the Hetal gold deposit in Guangdong Province and ore-prospecting directions[J].Mineral Deposits12(2):120~128
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