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Fluid-rock interaction in the Qitianling granite and associated tin deposits, South China: Evidence from boron and oxygen isotopes

机译:Qitianling花岗岩中流动的相互作用和相关锡存款,中国南方:从硼和氧同位素证据

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摘要

The behavior of boron and its isotopes in fluid-dominant processes and hydrothermal alteration of granites is examined using fresh and altered granite samples from the Qitianling granite and associated hydrothermal tin deposits in South China. Boron concentrations are highest in the fresh granite (37 ppm) and depleted as a result of two stages of fluid mobility and fluid-rock interaction within the granite. Constraints provided both by δ~(11)B and δ~(18)O data suggest that the first stage was related to exsolution of aqueous fluids from the granite magma at a temperature of >450 °C. This was followed by further boron depletion in the granite by hydrothermal circulation of meteoric water at lower temperatures (~350 °C) and low water/rock ratios. The sensitivity of coupled boron and oxygen isotope systematics to these processes suggests that they can provide valuable constraints on of fluid mobility in granite and associated mineralization.
机译:硼及其同位素的行为fluid-dominant过程和热液使用新鲜的蚀变花岗岩的检查从Qitianling和改变花岗岩样品花岗岩和相关的热液锡存款在中国南方。新鲜的花岗岩(37 ppm)和枯竭流体流动和两个阶段的结果花岗岩中流动的相互作用。约束提供了通过B和δδ~ (11)~ (18)O数据表明,第一阶段有关脱溶水性液体的花岗岩岩浆的温度> 450°C。其次是进一步硼损耗花岗岩热液循环的陨石水在较低温度(~ 350°C)和低水/岩比。硼和氧同位素的分类学过程表明,他们可以提供有价值的在花岗岩和限制流体流动矿化有关。

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