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YongchenSong,CongChen,WenfengHu

Understanding Geologic Carbon Sequestration and Gas Hydrate from Molecular Simulation

Understanding Geologic Carbon Sequestration and Gas Hydrate from Molecular Simulation

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  • More about Understanding Geologic Carbon Sequestration and Gas Hydrate from Molecular Simulation

Understanding Geologic Carbon Sequestration and Gas Hydrate from Molecular Simulation systematically introduces CO2 geological sequestration and gas hydrate at the molecular-scale,with research including interfacial properties of multiphase,multicomponent systems,hydrogen bonding properties,adsorption characteristics of CO2CH4 in the pore,kinetic properties of decomposition/nucleation/growth of gas hydrate,the influence of additives on gas hydrate growth dynamics,and hydrate prevention and control technology. This book focuses on research-based achievements and provides a comprehensive look at global progress in the field.

Format: Paperback / softback
Length: 542 pages
Publication date: 14 March 2024
Publisher: Elsevier - Health Sciences Division


Understanding Geologic Carbon Sequestration and Gas Hydrate from Molecular Simulation systematically introduces CO2 geological sequestration and gas hydrate at the molecular scale, with research including interfacial properties of multiphase, multicomponent systems, hydrogen bonding properties, adsorption characteristics of CO2CH4 in the pore, kinetic properties of decomposition/nucleation/growth of gas hydrate, the influence of additives on gas hydrate growth dynamics, and hydrate prevention and control technology. This book focuses on research-based achievements and provides a comprehensive look at global progress in the field.

Due to the limited availability of resources on carbon geologic sequestration technology and gas hydrate technology at the molecular level, this book fills a gap in scientific literature and elucidates on further research.

The study of CO2 geological sequestration and gas hydrate from Molecular Simulation involves a comprehensive approach that encompasses various aspects. It begins by systematically introducing these concepts at the molecular scale, providing a detailed understanding of their behavior and characteristics. Researchers delve into the interfacial properties of multiphase, multicomponent systems, exploring the interactions and interactions between different components. They also examine the hydrogen bonding properties of gas hydrate, which play a crucial role in their stability and formation.

In addition, the book explores the adsorption characteristics of CO2CH4 in the pore, shedding light on the mechanisms by which these gases are captured and stored within the geological environment. The kinetic properties of decomposition/nucleation/growth of gas hydrate are also investigated, providing insights into the rate and mechanisms of gas hydrate formation and decomposition. Furthermore, the influence of additives on gas hydrate growth dynamics is examined, exploring how various substances can affect the growth and stability of gas hydrate systems.

To prevent and control hydrate formation, researchers explore hydrate prevention and control technology. This includes developing new materials and techniques that can inhibit or prevent the formation of gas hydrate, as well as developing strategies for managing and extracting gas hydrate resources.

Throughout the book, emphasis is placed on research-based achievements and providing a comprehensive look at global progress in the field. The authors showcase the latest advancements and discoveries, highlighting the key contributions made by researchers from around the world.

Understanding Geologic Carbon Sequestration and Gas Hydrate from Molecular Simulation serves as a valuable resource for scientists, researchers, and professionals involved in the field of carbon sequestration and gas hydrate technology. It provides a thorough understanding of these concepts at the molecular scale, facilitating further research and development in this critical area. By bridging the gap between theory and practice, this book contributes to the advancement of knowledge and the development of sustainable solutions for addressing climate change.

Weight: 842g
Dimension: 151 x 228 x 28 (mm)
ISBN-13: 9780443217654

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