分馏
地质学
硅酸盐
流纹岩
热液循环
硼
矿物学
岩浆
同位素分馏
玄武岩
平衡分馏
熔融包裹体
氧同位素
地球化学
化学
火山岩
火山
有机化学
地震学
作者
R. L. Hervig,Gordon Moore,Lynda B. Williams,Simon M. Peacock,John Holloway,K. Roggensack
出处
期刊:American Mineralogist
[Mineralogical Society of America]
日期:2002-05-01
卷期号:87 (5-6): 769-774
被引量:226
标识
DOI:10.2138/am-2002-5-620
摘要
The fractionation of B and its isotopes between aqueous fluid and silicate melt has been studied from 550 to 1100 °C and 100-500 MPa. Fluid-melt partition coefficients are <1 for basaltic melt and >1 for rhyolite melt. This shows that B is not always strongly extracted from melts into hydrous fluids. Boron isotopic fractionation is large compared with the carbon and oxygen stable isotopic systems (especially at high T) and is most simply explained by differences in coordination (trigonal vs. tetrahedral) among coexisting phases. Combined with earlier measurements on illite-water (300- 350 °C), B isotopic fractionation defines a temperature-dependent trend from 300 to 1100 °C. Because of the large magnitude and apparent low sensitivity to bulk composition, B isotopic fractionation can be readily applied to studies of diagenesis, hydrothermal alteration of planetary bodies, subduction- zone processing and arc magma generation, and magma chamber evolution.
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