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Intercalation in Layered Materials, M.S. Dresselhaus


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Автор: M.S. Dresselhaus
Название:  Intercalation in Layered Materials
ISBN: 9781475755589
Издательство: Springer
Классификация:

ISBN-10: 1475755589
Обложка/Формат: Soft cover
Страницы: 497
Вес: 0.87 кг.
Дата издания: 04.12.2013
Серия: Nato Science Series B:
Язык: English
Издание: 1986 ed.
Иллюстрации: 101 illustrations, black and white; xiii, 497 p. 101 illus.
Размер: 244 x 170 x 26
Читательская аудитория: Professional & vocational
Основная тема: Characterization and Evaluation of Materials
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание: This volume is prepared from lecture notes for the course Intercalation in Layered Materials which was held at the Ettore Majorana Centre for Scientific Culture at Erice, Sicily in July, 1986, as part of the International School of Materials Science and Tech- nology.


Photofunctional Layered Materials

Автор: Dongpeng Yan; Min Wei
Название: Photofunctional Layered Materials
ISBN: 3319169904 ISBN-13(EAN): 9783319169903
Издательство: Springer
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Цена: 36570.00 р.
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Описание: Physical and spectroscopic techniques used to determine, examine and model structures fall within the purview of Structure and Bonding to the extent that the focus is on the scientific results obtained and not on specialist information concerning the techniques themselves.

Supported Layered Double Hydroxides as CO2 Adsorbents for Sorption-enhanced H2 Production

Автор: Iruretagoyena Ferrer
Название: Supported Layered Double Hydroxides as CO2 Adsorbents for Sorption-enhanced H2 Production
ISBN: 3319412752 ISBN-13(EAN): 9783319412757
Издательство: Springer
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Цена: 16979.00 р.
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Описание:

This thesis presents a combination of material synthesis and characterization with process modeling. In it, the CO2 adsorption properties of hydrotalcites are enhanced through the production of novel supported hybrids (carbon nanotubes and graphene oxide) and the promotion with alkali metals. Hydrogen is regarded as a sustainable energy carrier, since the end users produce no carbon emissions. However, given that most of the hydrogen produced worldwide comes from fossil fuels, its potential as a carbon-free alternative depends on the ability to capture the carbon dioxide released during manufacture. Sorption-enhanced hydrogen production, in which CO2 is removed as it is formed, can make a major contribution to achieving this. The challenge is to find solid adsorbents with sufficient CO2 capacity that can work in the right temperature window over repeated adsorption-desorption cycles.
The book presents a highly detailed characterization of the materials, together with an accurate measurement of their adsorption properties under dry conditions and in the presence of steam. It demonstrates that even small quantities of graphene oxide provide superior thermal stability to hydrotalcites due to their compatible layered structure, making them well suited as volume-efficient adsorbents for CO2. Lastly, it identifies suitable catalysts for the overall sorption-enhanced water gas shift process.

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