Nanocomposites (Salt Inside Porous Matrix) for Methanol Sorption: Design of Phase Composition and Sorption Properties, Practical Applications Научная публикация
Сборник | Sorbents: Properties, Materials and Applications Монография, Nova Science Publishers, Inc. NY 11788, USA.2009. 405 c. ISBN 9781607418511. WOS Scopus |
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Вых. Данные | Год: 2009, Страницы: 109-138 Страниц : 30 | ||
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Реферат:
In this communication we suggest and discuss a new approach to target-orientated design of methanol sorbents "a salt in a porous matrix" for various applications. In the frame of this approach the demands of particular application are formulated and the composite adsorbent with properties meeting these demands is synthesised. Practical tools available to tailor such optimal sorbent, are suggested and discussed: the chemical nature of confined salt, the porous structure of the host matrix and additives forming solid solution with a basic confined salt. All these tools can be used to adjust the properties of real composite adsorbent to those of the optimal one. Finally the intent synthesis of composite adsorbents of methanol for two practical applications, namely increase in conversion of the catalytic methanol synthesis and the adsorption cooling, is described.
Библиографическая ссылка:
Gordeeva L.G.
, Aristov Y.I.
Nanocomposites (Salt Inside Porous Matrix) for Methanol Sorption: Design of Phase Composition and Sorption Properties, Practical Applications
Глава монографии Sorbents: Properties, Materials and Applications. – Nova Science Publishers, Inc., 2009. – C.109-138. – ISBN 9781607418511. WOS Scopus РИНЦ
Nanocomposites (Salt Inside Porous Matrix) for Methanol Sorption: Design of Phase Composition and Sorption Properties, Practical Applications
Глава монографии Sorbents: Properties, Materials and Applications. – Nova Science Publishers, Inc., 2009. – C.109-138. – ISBN 9781607418511. WOS Scopus РИНЦ
Идентификаторы БД:
Web of science | WOS:000275616300003 |
Scopus | 2-s2.0-76449105149 |
РИНЦ | 21892640 |
Chemical Abstracts | 2010:708440 |
Chemical Abstracts (print) | 154:136817 |