Geophysics and geosequestration:
Geosequestration involves the deep geological storage of carbon dioxide from major industrial sources, providing a potential solution for reducing the rate of increase of atmospheric concentrations of carbon dioxide and mitigating climate change. This volume provides an overview of the major geophys...
Gespeichert in:
Weitere beteiligte Personen: | , , |
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Format: | E-Book |
Sprache: | Englisch |
Veröffentlicht: |
Cambridge
Cambridge University Press
2019
|
Links: | https://doi.org/10.1017/9781316480724 |
Zusammenfassung: | Geosequestration involves the deep geological storage of carbon dioxide from major industrial sources, providing a potential solution for reducing the rate of increase of atmospheric concentrations of carbon dioxide and mitigating climate change. This volume provides an overview of the major geophysical techniques and analysis methods for monitoring the movement and predictability of carbon dioxide plumes underground. Comprising chapters from eminent researchers, the book is illustrated with practical examples and case studies of active projects and government initiatives, and discusses their successes and remaining challenges. A key case study from Norway demonstrates how governments and other stake-holders could estimate storage capacity and design storage projects that meet the requirements of regulatory authorities. Presenting reasons for embracing geosequestration, technical best practice for carbon management, and outlooks for the future, this volume provides a key reference for academic researchers, industry practitioners and graduate students looking to gain insight into subsurface carbon management. |
Umfang: | 1 Online-Ressource (xii, 377 Seiten) |
ISBN: | 9781316480724 |
Internformat
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520 | |a Geosequestration involves the deep geological storage of carbon dioxide from major industrial sources, providing a potential solution for reducing the rate of increase of atmospheric concentrations of carbon dioxide and mitigating climate change. This volume provides an overview of the major geophysical techniques and analysis methods for monitoring the movement and predictability of carbon dioxide plumes underground. Comprising chapters from eminent researchers, the book is illustrated with practical examples and case studies of active projects and government initiatives, and discusses their successes and remaining challenges. A key case study from Norway demonstrates how governments and other stake-holders could estimate storage capacity and design storage projects that meet the requirements of regulatory authorities. Presenting reasons for embracing geosequestration, technical best practice for carbon management, and outlooks for the future, this volume provides a key reference for academic researchers, industry practitioners and graduate students looking to gain insight into subsurface carbon management. | ||
700 | 1 | |a Davis, Thomas L. |d 1947- | |
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Datensatz im Suchindex
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illustrated | Not Illustrated |
indexdate | 2025-03-19T15:54:01Z |
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isbn | 9781316480724 |
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spelling | Geophysics and geosequestration edited by Thomas L. Davis, Martin Landrø, Malcolm Wilson Cambridge Cambridge University Press 2019 1 Online-Ressource (xii, 377 Seiten) txt c cr Geosequestration involves the deep geological storage of carbon dioxide from major industrial sources, providing a potential solution for reducing the rate of increase of atmospheric concentrations of carbon dioxide and mitigating climate change. This volume provides an overview of the major geophysical techniques and analysis methods for monitoring the movement and predictability of carbon dioxide plumes underground. Comprising chapters from eminent researchers, the book is illustrated with practical examples and case studies of active projects and government initiatives, and discusses their successes and remaining challenges. A key case study from Norway demonstrates how governments and other stake-holders could estimate storage capacity and design storage projects that meet the requirements of regulatory authorities. Presenting reasons for embracing geosequestration, technical best practice for carbon management, and outlooks for the future, this volume provides a key reference for academic researchers, industry practitioners and graduate students looking to gain insight into subsurface carbon management. Davis, Thomas L. 1947- Landro, Martin 1958- Wilson, Malcolm 1951- Erscheint auch als Druck-Ausgabe 9781107137493 |
spellingShingle | Geophysics and geosequestration |
title | Geophysics and geosequestration |
title_auth | Geophysics and geosequestration |
title_exact_search | Geophysics and geosequestration |
title_full | Geophysics and geosequestration edited by Thomas L. Davis, Martin Landrø, Malcolm Wilson |
title_fullStr | Geophysics and geosequestration edited by Thomas L. Davis, Martin Landrø, Malcolm Wilson |
title_full_unstemmed | Geophysics and geosequestration edited by Thomas L. Davis, Martin Landrø, Malcolm Wilson |
title_short | Geophysics and geosequestration |
title_sort | geophysics and geosequestration |
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