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Geochemistry of Silicon Isotopes

Geochemistry of Silicon Isotopes
Author: Tiping Ding
Publisher: Walter de Gruyter GmbH & Co KG
Total Pages: 290
Release: 2017-12-18
Genre: Medical
ISBN: 3110402459

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The book starts with an introduction on silicon isotopes and related analytical methods, and explains the mechanisms of silicon isotope fractionation. Silicon isotope distributions in lithosphere, hydrosphere and biosphere are shown based on results from field studies, and silicon isotope relevance for applications are presented.


Silicon Isotope Geochemistry

Silicon Isotope Geochemistry
Author:
Publisher:
Total Pages: 125
Release: 1996
Genre: Geochemistry
ISBN: 9787116020191

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Stable Isotope Geochemistry

Stable Isotope Geochemistry
Author: Jochen Hoefs
Publisher: Springer Nature
Total Pages: 528
Release: 2021-10-08
Genre: Science
ISBN: 3030776921

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This classic textbook is an introduction to the systematics and the use of stable isotopes in geosciences. It is subdivided into three parts: i) theoretical and experimental principles, ii) fractionation processes of light and heavy elements, iii) the natural variations of geologically important reservoirs. Since the publication of the previous edition improvements in multi-collector ICP mass-spectrometry have increased the ability to measure isotope ratios with very high precision for many elements of the periodic table. The amount of published data has increased tremendously in the last years; thus, conclusions based on a limited database are now better constrained. In this new edition, therefore, 47 elements with resolvable natural variations in isotope composition are discussed. This increase of elements, together with advances in the calculation of equilibrium isotope fractionation using ab initio methods, has led to an unbelievable rise of publications, making substantial major revisions and extensions of the last edition necessary. Many new references have been added, which enable quick access to recent literature.


Non-Traditional Stable Isotopes

Non-Traditional Stable Isotopes
Author: Fang-Zhen Teng
Publisher: Walter de Gruyter GmbH & Co KG
Total Pages: 902
Release: 2017-03-06
Genre: Science
ISBN: 3110545632

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The development of multi-collector inductively coupled plasma mass spectrometry (MC-ICPMS) makes it possible to precisely measure non-traditional stable isotopes. This volume reviews the current status of non-traditional isotope geochemistry from analytical, theoretical, and experimental approaches to analysis of natural samples. In particular, important applications to cosmochemistry, high-temperature geochemistry, low-temperature geochemistry, and geobiology are discussed. This volume provides the most comprehensive review on non-traditional isotope geochemistry for students and researchers who are interested in both the theory and applications of non-traditional stable isotope geochemistry.


Geochemistry of Silicon Isotopes

Geochemistry of Silicon Isotopes
Author: Tiping Ding
Publisher: Walter de Gruyter GmbH & Co KG
Total Pages: 287
Release: 2017-12-18
Genre: Medical
ISBN: 3110402475

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The book starts with an introduction on silicon isotopes and related analytical methods, and explains the mechanisms of silicon isotope fractionation. Silicon isotope distributions in lithosphere, hydrosphere and biosphere are shown based on results from field studies, and silicon isotope relevance for applications are presented.


Compilation of Minimum and Maximum Isotope Ratios of Selected Elements in Naturally Occurring Terrestrial Materials and Reagents

Compilation of Minimum and Maximum Isotope Ratios of Selected Elements in Naturally Occurring Terrestrial Materials and Reagents
Author: Tyler B. Coplen
Publisher:
Total Pages: 114
Release: 2002
Genre: Geochemistry
ISBN:

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Documented variations in the isotopic compositions of some chemical elements are responsible for expanded uncertainties in the standard atomic weights published by the Commission on Atomic Weights and Isotopic Abundances of the International Union of Pure and Applied Chemistry. This report summarizes reported variations in the isotopic compositions of 20 elements that are due to physical and chemical fractionation processes (not due to radioactive decay) and their effects on the standard atomic weight uncertainties. For 11 of those elements (hydrogen, lithium, boron, carbon, nitrogen, oxygen, silicon, sulfur, chlorine, copper, and selenium), standard atomic weight uncertainties have been assigned values that are substantially larger than analytical uncertainties because of common isotope abundance variations in materials of natural terrestrial origin. For 2 elements (chromium and thallium), recently reported isotope abundance variations potentially are large enough to result in future expansion of their atomic weight uncertainties. For 7 elements (magnesium, calcium, iron, zinc, molybdenum, palladium, and tellurium), documented isotope-abundance variations in materials of natural terrestrial origin are too small to have a significant effect on their standard atomic weight uncertainties.


The Geology of the Belingwe Greenstone Belt, Zimbabwe

The Geology of the Belingwe Greenstone Belt, Zimbabwe
Author: M.J. Bickle
Publisher: CRC Press
Total Pages: 248
Release: 2020-08-26
Genre: Science
ISBN: 1000099636

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A study on the Bellingwe Greenstone Belt, presenting the stratigraphy of the belt, its structure and tectonic setting, the sedimentology of what may be a rift basin, the geochemistry of the freshest Archaean komatiites yet found, and models of the evolution of the region.


Stable Isotope Geochemistry

Stable Isotope Geochemistry
Author: J. Hoefs
Publisher: Springer Science & Business Media
Total Pages: 283
Release: 2013-06-29
Genre: Science
ISBN: 3662022907

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Distinguishing Primary Versus Secondary Geochemical and Silicon Isotope Characteristics of Precambrian Chert and Iron Formation

Distinguishing Primary Versus Secondary Geochemical and Silicon Isotope Characteristics of Precambrian Chert and Iron Formation
Author: Latisha Ashley Brengman
Publisher:
Total Pages: 258
Release: 2015
Genre: Chert
ISBN:

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Precambrian chert and banded iron formation (BIF) are defined as chemical sediments precipitated directly from seawater. As such, their geochemistry, including trace elements, rare earth elements (REE), and isotopes (O, Si) may preserve Precambrian seawater conditions. However, the chemical signature of these rocks may not simply reflect seawater, because hydrothermal interactions and metasomatism may produce rocks that petrographically and chemically resemble chert and BIF, including seawater-like compositional characteristics acquired during mineral replacement. Interpreting the major-, trace-, and rare-earth element signatures of these rocks requires the identification of geochemical and isotopic fingerprints that differentiate rocks formed from chemical sedimentation from rocks formed through replacement. Previously, REE proxies have been used to identify chemically precipitated sedimentary rocks such as chert. However, these established proxies have proven to be non-diagnostic in depositional settings where alteration has resulted in element mobility. Silicon isotopes, by contrast, have the potential to discriminate rocks formed by chemical sedimentation from those formed through replacement, because they record process-specific information concerning the mechanism of quartz precipitation. Of equal importance, silicon isotopes can provide key information that may identify marine silicon sources. Using information concerning what isotopic signatures can be preserved in quartz precipitates from different depositional settings, a compilation of the silicon isotope composition of chert can be deciphered to understand lithology-dependent trends. Archean-aged silicified rocks formed through replacement of primary minerals by quartz have a silicon-isotope composition similar to the original rock. Chemical sedimentary chert formed through quartz precipitation proximal to hydrothermal systems has a wide range of silicon-isotope compositions, and shows no apparent trend with respect to time. Only chemical sedimentary cherts associated with iron formation formed in continentally influenced depositional settings record a systematic trend with respect to time. These rocks record a unidirectional positive shift in silicon-isotope compositions. We interpret this trend to reflect chemical precipitation from a changing ocean reservoir, where, as a result of steady growth and emergence of continental masses, the ocean reservoir evolved from one dominated by a hydrothermal silicon isotope signature to a continental one.


Isotope Geochemistry

Isotope Geochemistry
Author: William M. White
Publisher: John Wiley & Sons
Total Pages: 502
Release: 2015-01-27
Genre: Science
ISBN: 0470656700

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This book provides a comprehensive introduction to radiogenic and stable isotope geochemistry. Beginning with a brief overview of nuclear physics and nuclear origins, it then reviews radioactive decay schemes and their use in geochronology. A following chapter covers the closely related techniques such as fission-track and carbon-14 dating. Subsequent chapters cover nucleosynthetic anomalies in meteorites and early solar system chronology and the use of radiogenic isotopes in understanding the evolution of the Earth’s mantle, crust, and oceans. Attention then turns to stable isotopes and after reviewing the basic principles involved, the book explores their use in topics as diverse as mantle evolution, archeology and paleontology, ore formation, and, particularly, paleoclimatology. A following chapter explores recent developments including unconventional stable isotopes, mass-independent fractionation, and isotopic ‘clumping’. The final chapter reviews the isotopic variation in the noble gases, which result from both radioactive decay and chemical fractionations.