Genesis of diamonds and associated phases

This book presents an overview of recent advances in our understanding of the genesis of diamonds and the associated phases. It is divided into three main parts, starting with an introduction to the analysis of diamond inclusions to infer the formation processes. In turn, the second part of the book...

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Hlavní autor: Litvin, Yuriy A (Autor)
Korporace: SpringerLink (online služba) (Distributor) 
Médium: E-kniha
Jazyk:angličtina
Vydáno: Cham : Springer, 2017
Edice:Springer mineralogy
Žánr/forma:monografie
elektronické knihy
ISBN:978-3-319-54543-1
978-3-319-54542-4
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On-line přístup:Plný text
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505 0 |a Chapter 1 Introduction: Physico-Chemical Experiments as the Key to Diamond Genesis Problems -- Chapter 2 Mantle Rocks and Diamond-Associated Phases: Role in Diamond Origin -- Chapter 3 Strongly Compressed Carbonate Systems in Diamond Genesis -- Chapter 4 Upper-Mantle Diamond-Parental Systems in Physico-Chemical Experiment -- Chapter 5 Physico-Chemical Features of Lower-Mantle Diamond-Parental Systems -- Chapter 6 Ultrabasic-Basic Fractionating of Mantle Magmas and Diamond-Parental Melts -- Chapter 7 Mantle-Carbonatite Conception of Diamond and Associated Phases Genesis 
520 |a This book presents an overview of recent advances in our understanding of the genesis of diamonds and the associated phases. It is divided into three main parts, starting with an introduction to the analysis of diamond inclusions to infer the formation processes. In turn, the second part of the book presents high-pressure experimental studies in mantle diamond-parental mineral systems with representative multicomponent boundary compositions. The experimental syngenesis phase diagrams provided reveal the physicochemical mechanisms of diamond nucleation and substantiate the mantle-carbonatite concept of the genesis of diamonds and associated phases. Lastly, the book describes the genetic classification of diamond-hosted mineral inclusions and experimentally determined RE “mineral-parental melt” partition coefficients. The physicochemical experimental evidence presented shows the driving forces behind the fractional evolution of the mantle magmas and diamond-parental melts. Given the depth and breadth of its coverage, the book offers researchers essential new insights into the ways diamonds and associated minerals and rocks are naturally created. 
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