SUMMARY OF CHARACTERISTICS AND SIGNIFICANCE OF THE MAGMATIC EPIDOTE

Zhang Huafeng, Ye Qingpei, Zhai Mingguo
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Abstract

Recent advances and geological significance of magmatic epidote(MEp) are summaried in this article. MEp stability in magma is firmly correlated with temperature, pressure, fH_(2)O and fO_(2). Crystallization sequence from magma of MEp depends on pressure but not fO_(2) . while,fO_(2 )can changes MEp minimum cystallization pressure from 5×10~8 Pa(fO_(2)=NNO)to 3×10~8 Pa(fO_(2)=HM). MEp which crystallized earlier than biotite or hornblende in the magma, can not be used as a barometer, but be useful in caculating the ascent speed of magma. Those MEp that occurred as subsolid mineral with or without resorption of earlier-formed hornblende, can be use as pressure indicator for intrusion. With respect to the influence of fO_(2), Granite can be subdivided into Magnetite and Ilmenite series. MEp that occurred in Magnetite series granite indicates the minimum pressure of 3kbar and 5kbar of Ilmenite series granite.
岩浆绿帘石特征及意义综述
本文综述了岩浆绿绿岩的研究进展及其地质意义。岩浆MEp稳定性与温度、压力、fH_(2)O和fO_(2)密切相关。MEp岩浆的结晶顺序与压力有关,与fO_(2)无关。fO_(2)可使MEp最小结晶压力从5×10~8 Pa(fO_(2)=NNO)改变为3×10~8 Pa(fO_(2)=HM)。MEp在岩浆中比黑云母和角闪石更早结晶,不能作为晴雨表,但可用于计算岩浆的上升速度。以亚固体形式赋存的MEp,是否被早期形成的角闪石吸收,可作为侵入的压力指示物。根据fO_(2)的影响,花岗岩可分为磁铁矿系列和钛铁矿系列。磁铁矿系列花岗岩的MEp值表明磁铁矿系列花岗岩的最低压力为3kbar,钛铁矿系列花岗岩的最低压力为5kbar。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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