Introduction to zeolite science and practice pdf
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- Introduction to Zeolite Science and Practice (eBook)
- Introduction to zeolite science and practice
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Chapter Headings. The Zeolite Scene Th. Maesen, B. Zeolites and Molecular Sieves. An Historical Perspective E.
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Embed Size px x x x x Delmon and J. Yates Series Editor: G. Centi Vol. Cejka JirJ. Because of rapid advances in the medical sciences, in particular, independent verification of diagnoses and drug dosages should be made Library of Congress Cataloging-in-Publication Data A catalog record for this book is available from the Library of Congress British Library Cataloguing in Publication Data A catalogue record for this book is available from the British Library ISBN: ISSN: For information on all Elsevier publications visit our website at books.
Introduction to Zeolite Science and Practice (eBook)
Double loading of a zeolite with a triplet energy donor and a triplet energy acceptor followed by selective irradiation into the donor absorption band leads to characteristic triplet state reactivity of the acceptor. If you are not the author of this article and you wish to reproduce material from it in a third party non-RSC publication you must formally request permission using Copyright Clearance Center. Go to our Instructions for using Copyright Clearance Center page for details. Authors contributing to RSC publications journal articles, books or book chapters do not need to formally request permission to reproduce material contained in this article provided that the correct acknowledgement is given with the reproduced material. If the material has been adapted instead of reproduced from the original RSC publication "Reproduced from" can be substituted with "Adapted from".
Introduction to zeolite science and practice
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The adsorption of hydrogen molecules on different zeolites at near room temperature and extremely high pressures has been simulated employing Grand Canonical Monte Carlo GCMC method. Some important physical amounts under different temperatures and pressures, such as adsorption isotherms, adsorption amounts, and isosteric heats were studied. The different hydrogen adsorption behavior between them is explained by the isosteric heats of adsorption at different temperatures. These results may help us to understand different hydrogen adsorption properties of these two zeolites, thus facilitate exploring new hydrogen storage candidates experimentally. Hydrogen storage is a key enabling technology for the extensive use of hydrogen as an energy carrier. The aim is to develop economically and environmentally attractive solutions for storage options. Therefore, a number of novel storage techniques are being investigated to complement the currently available methods.