原文服务方: 地球化学学报(英文)       
摘要:
In this paper, we show that supercritical fluids have a greater significance in the generation of pegmatites, and for ore-forming processes related to granites than is usually assumed. We show that the supercritical melt or fluid is a silicate phase in which volatiles; principally H2O are completely miscible in all proportions at magmatic temperatures and pressures. This phase evolves from felsic melts and changes into hydrothermal fluids, and its unique properties are particularly important in sequestering and concentrating low abundance elements, such as metals. In our past research, we have focused on processes observed at upper crustal levels, however extensive work by us and other researchers have demonstrated that supercritical melt/fluids should be abundant in melting zones at deep-crustal levels too. We propose that these fluids may provide a connecting link between lower and upper crustal magmas, and a highly efficient transport mechanism for usually melt incompatible elements. In this paper, we explore the unique features of this fluid which allow the partitioning of various elements and compounds, potentially up to extreme levels, and may explain various features both of mineralization and the magmas that produced them.
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篇名 The enhanced element enrichment in the supercritical states of granite–pegmatite systems
来源期刊 学科 地球科学
关键词 Granites Pegmatites Supercritical state Extreme element enrichment
年,卷(期) 2022,(3) 所属期刊栏目
研究方向 页码范围 335-349
页数 14页 分类号
字数 语种 英文
DOI 10.1007/s11631-019-00319-z
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Granites
Pegmatites
Supercritical state
Extreme element enrichment
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地球化学学报(英文)
双月刊
2096-0956
52-1161/p
16开
贵阳市林城西路99号
1982-01-01
英语
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230
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