I. Samson, A. Anderson, D. Marshall (eds): Fluid Inclusions: Analysis and Interpretation

I. Samson, A. Anderson, D. Marshall (eds): Fluid Inclusions: Analysis and Interpretation
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DOI:
10.1007/s00126-004-0411-6
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发表时间:
2004-03
影响因子:
4.8
通讯作者:
A. Kerkhof
A. Kerkhof
中科院分区:
地球科学1区
文献类型:
--
作者:
A. Kerkhof

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1981年出版的第6卷《流体包裹体:岩石学应用》是第一部流体包裹体综述卷,已成为许多对流体包裹体感兴趣的地质学家的指南。从那时起,其他一些流体包裹体教科书也出版了,尤其是E。Roedder(1984,Mineralogical Society of America).然而,在过去的几十年中,流体包裹体的分析和解释取得了相当大的进展,主要是发表在各种科学期刊上。因此,在本卷中捆绑流体包裹体研究的最新技术的倡议是非常受欢迎的。这本书的14个章节由十几位撰稿人撰写,涵盖了流体包裹体研究的整个领域,从基本概念,包括地壳流体的PVTX关系,到化学分析和建模:(1)流体包裹体介绍:RJ Bodnar;(2)流体包裹体的岩相分析:RH Goldstein;(3)H2O包裹体的系统学:L。钻石;(4)水-电解质流体包裹体数据解释:RJ Bodnar;(5)含气水流体包裹体介绍:LW Diamond;(6)石油流体包裹体介绍:RC Burruss;(7)流体包裹体研究中的计算机模拟:RJ Bakker,PE Brown;(8)流体包裹体的再平衡:RJ Bodnar;(9)流体包裹体中电解质的整体分析:SA Gleeson;(10)流体包裹体挥发分的整体分析:S.萨尔维,AE威廉姆斯-琼斯;(11)流体包裹体的拉曼光谱:RC Burruss;(12)流体包裹体的LA-ICPMS分析:JE Gagnon、IM Samson、BJ Fryer;(13)流体包裹体的电子、核和X射线探针显微分析:A.安德森河(14)熔体(玻璃±晶体)包裹体:A.安德森。一个非常有用的术语和符号词汇表(由L. Diamond)显示了Roedder在1977年提出的术语的必要扩展。随附的CD-ROM包含Bakker和Brown在本章中描述的流体包裹体建模的计算机软件,以及可用于教学演示的卷中所有数字的数字版本。短期课程卷6与仍然相关的信息也可在光盘上。前两章解释流体包裹体如何形成,并总结了解释流体圈闭的相对时间的岩相学标准。介绍了流体包裹体岩石学的辅助方法,如纺锤体阶段和阴极发光成像技术。还提供了样品制备的实用信息。任何流体包裹体研究的基础都是对流体包裹体的认识,而流体包裹体在第一次成藏后会发生变化。在这方面,第8章对再平衡的主要机制的总结是对前几章的一个很好的总结。
The short-course volume 6 ‘‘Fluid Inclusions: Applications to Petrology’’issued in 1981 was the first review volume on fluid inclusions and has been a guide for many geologists interested in fluid inclusions. Since that time a handful of other fluid inclusion textbooks have been published, not least the ‘‘bible of fluid inclusions’’by E. Roedder (1984, Mineralogical Society of America). However, the considerable advances made on the analysis and interpretation of fluid inclusions during the last decades have been mostly published in various scientific journals. The initiative of bundling the state of the art of fluid inclusion research in the present volume is therefore more than welcome. The 14 chapters of the volume written by more than a dozen contributors cover the whole field of fluid inclusion research, from fundamental concepts, including the PVTX relationships of crustal fluids, to chemical analysis and modeling:(1) Introduction to fluid inclusions: RJ Bodnar;(2) Petrographic analysis of fluid inclusions: RH Goldstein;(3) Systematics of H2O inclusions: L. Diamond;(4) Interpretation of data from aqueous-electrolyte fluid inclusions: RJ Bodnar;(5) Introduction to gas-bearing aqueous fluid inclusions: LW Diamond;(6) Petroleum fluid inclusions, an introduction: RC Burruss;(7) Computer modelling in fluid inclusion research: RJ Bakker, PE Brown;(8) Re-equilibration of fluid inclusions: RJ Bodnar;(9) Bulk analysis of electrolytes in fluid inclusions: SA Gleeson;(10) Bulk analysis of volatiles in fluid inclusions: S. Salvi, AE Williams-Jones;(11) Raman spectroscopy of fluid inclusions: RC Burruss;(12) LA-ICPMS analysis of fluid inclusions: JE Gagnon, IM Samson, BJ Fryer;(13) Electron, nuclear and X-ray probe microanalysis of fluid inclusions: A. Anderson, R. Mayanovic;(14) Melt (glass±crystals) inclusions: A. Anderson. A very helpful glossary of terms and symbols (compiled by L. Diamond) displays a necessary extension of the terminology as proposed by Roedder in 1977. An accompanying CD-ROM contains computer software for fluid inclusion modeling as described in the chapter by Bakker and Brown, as well as digital versions of all the figures from the volume that can be used in teaching presentations. The short-course volume 6 with still-relevant information is also available on the CDROM.The first two chapters explain how fluid inclusions form and summarize the petrographical criteria for interpreting the relative timing of fluid entrapment. Assisting methods for ‘‘fluid inclusion petrology’’such as spindle stage and cathodoluminescence imaging techniques are included. Practical information for sample preparation is also provided. Indispensable for any fluid inclusion study is the recognition of fluid inclusions, which are modified after first entrapment. In that respect the summary of the main mechanisms of reequilibration in Chapter 8 is a good conclusion to the first chapters.