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Nanoporous materials for gas storage
~
Kaneko, Katsumi.
Nanoporous materials for gas storage
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Nanoporous materials for gas storageedited by Katsumi Kaneko, Francisco Rodriguez-Reinoso.
其他作者:
Kaneko, Katsumi.
出版者:
Singapore :Springer Singapore :2019.
面頁冊數:
x, 403 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
標題:
Nanostructured materials.
電子資源:
https://doi.org/10.1007/978-981-13-3504-4
ISBN:
9789811335044$q(electronic bk.)
Nanoporous materials for gas storage
Nanoporous materials for gas storage
[electronic resource] /edited by Katsumi Kaneko, Francisco Rodriguez-Reinoso. - Singapore :Springer Singapore :2019. - x, 403 p. :ill. (some col.), digital ;24 cm. - Green energy and technology,1865-3529. - Green energy and technology..
Introduction -- Supercritical gases -- Fundamental science of gas storage -- Engineering aspects of gas storage -- Nanoporous carbons -- MOFs -- Zeolites and other adsorbents -- Methane storage on nanoporous carbons -- Methane storage on metal organic frameworks -- Methane storage on zeolite and others adsorbents -- Storage of hydrogen on nanoporous adsorbents -- CO2 storage on nanoporous carbon -- CO2 storage on metal organic framework -- CO2 storage on zeolites and other adsorbents -- Clathrate-mediated gas storage -- Conclusions.
This book shows the promising future and essential issues on the storage of the supercritical gases, including hydrogen, methane and carbon dioxide, by adsorption with controlling the gas-solid interaction by use of designed nanoporous materials. It explains the reason why the storage of these gases with adsorption is difficult from the fundamentals in terms of gas-solid interaction. Also, the example of industrial application of natural gas storage with adsorption is described. It consists of 16 chapters which describe fundamentals, application, key nanoporous materials (nanoporous carbon, metal organic frame works, zeolites) and their storage performance for hydrogen, methane, and carbon dioxide. Thus, this book appeals to a wide readership of the academic and industrial researchers and it can also be used in the classroom for graduate students focusing on clean energy technology, green chemistry, energy conversion and storage, chemical engineering, nanomaterials science and technology, surface and interface science, adsorption science and technology, carbon science and technology, metal organic framework science, zeolite science, nanoporous materials science, nanotechnology, environmental protection, and gas sensors.
ISBN: 9789811335044$q(electronic bk.)
Standard No.: 10.1007/978-981-13-3504-4doiSubjects--Topical Terms:
216041
Nanostructured materials.
LC Class. No.: TA418.9.N35 / N366 2019
Dewey Class. No.: 620.115
Nanoporous materials for gas storage
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Introduction -- Supercritical gases -- Fundamental science of gas storage -- Engineering aspects of gas storage -- Nanoporous carbons -- MOFs -- Zeolites and other adsorbents -- Methane storage on nanoporous carbons -- Methane storage on metal organic frameworks -- Methane storage on zeolite and others adsorbents -- Storage of hydrogen on nanoporous adsorbents -- CO2 storage on nanoporous carbon -- CO2 storage on metal organic framework -- CO2 storage on zeolites and other adsorbents -- Clathrate-mediated gas storage -- Conclusions.
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This book shows the promising future and essential issues on the storage of the supercritical gases, including hydrogen, methane and carbon dioxide, by adsorption with controlling the gas-solid interaction by use of designed nanoporous materials. It explains the reason why the storage of these gases with adsorption is difficult from the fundamentals in terms of gas-solid interaction. Also, the example of industrial application of natural gas storage with adsorption is described. It consists of 16 chapters which describe fundamentals, application, key nanoporous materials (nanoporous carbon, metal organic frame works, zeolites) and their storage performance for hydrogen, methane, and carbon dioxide. Thus, this book appeals to a wide readership of the academic and industrial researchers and it can also be used in the classroom for graduate students focusing on clean energy technology, green chemistry, energy conversion and storage, chemical engineering, nanomaterials science and technology, surface and interface science, adsorption science and technology, carbon science and technology, metal organic framework science, zeolite science, nanoporous materials science, nanotechnology, environmental protection, and gas sensors.
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