The replacement of plagioclase feldspars by albite: observations from hydrothermal experiments

被引:0
作者
Jörn Hövelmann
Andrew Putnis
Thorsten Geisler
Burkhard C. Schmidt
Ute Golla-Schindler
机构
[1] Westfälische Wilhelms-Universität Münster,Institut für Mineralogie
[2] University of Oslo,Physics of Geological Processes (PGP)
[3] Georg-August Universität Göttingen,Experimentelle und Angewandte Mineralogie, Geowissenschaftliches Zentrum Göttingen
来源
Contributions to Mineralogy and Petrology | 2010年 / 159卷
关键词
Plagioclase albitisation; Fluid–mineral interaction; Interface-coupled dissolution–reprecipitation; Hydrothermal experiments; Element mobility;
D O I
暂无
中图分类号
学科分类号
摘要
Oligoclase and labradorite crystals have been experimentally replaced by albite in an aqueous sodium silicate solution at 600°C and 2 kbars. The replacement is pseudomorphic and is characterised by a sharp chemical interface which progresses through the feldspar while preserving the crystallographic orientation. Reaction rims of albite, up to 50 μm thick, can be readily achieved within 14 days. Re-equilibration of plagioclase in an 18O-enriched sodium- and silica-bearing solution results in oxygen isotope redistribution within the feldspar framework structure. The observed characteristics of the reaction products are similar to naturally albitised plagioclase and are indicative of an interface-coupled dissolution–reprecipitation mechanism. Chemical analyses demonstrate that the albitisation is accompanied by the mobilisation of major, minor and trace elements also including elements such as Al and Ti which are commonly regarded as immobile during hydrothermal alteration. The results contribute to developing our understanding of the close association between large-scale albitisation and secondary ore mineralisation which is common in nature.
引用
收藏
页码:43 / 59
页数:16
相关论文
共 155 条
[51]  
Shock EL(1987)Mineral evolution and element mobility during episyenitization (dequartzification) and albitization in the postkinematic Bohus granite, southwest Sweden Neues Jahrb Min 6 241-248
[52]  
Sassani DC(2007)Mechanism of hydrothermal alteration of natural self-irradiated and synthetic crystalline titanate-based pyrochlore Econ Geol 102 393-414
[53]  
Harlov DE(1993)Mineral replacement reactions: from macroscopic observations to microscopic mechanisms Chem Geol 110 233-249
[54]  
Wirth R(1994)The mechanism of reequilibration of solids in the presence of a fluid phase Geochim Cosmochim Acta 58 5379-5400
[55]  
Forster HJ(undefined)Direct observations of pseudomorphism: compositional and textural evolution at a fluid–solid interface undefined undefined undefined-undefined
[56]  
Hellmann R(undefined)An experimental study of the replacement of leucite by analcime undefined undefined undefined-undefined
[57]  
Hellmann R(undefined)Cation exchange equilibria between plagioclase and aqueous chloride solution at 600 to 700°C and 2 to 5 kbar undefined undefined undefined-undefined
[58]  
Penisson JM(undefined)Cation and oxygen isotope exchange between plagioclase and aqueous chloride solution undefined undefined undefined-undefined
[59]  
Hervig RL(undefined)The geology of the Rakkurijärvi Cu-(Au) prospect, Norrbotten: a new iron oxide-copper-gold deposit in northern Sweden undefined undefined undefined-undefined
[60]  
Thomassin JH(undefined)Titanium mobility in metamorphic systems: a review undefined undefined undefined-undefined