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Fly ash zeolites[electronic resource...
~
Jha, Bhagwanjee.
Fly ash zeolites[electronic resource] :innovations, applications, and directions /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
549.68
書名/作者:
Fly ash zeolites : innovations, applications, and directions // by Bhagwanjee Jha, Devendra Narain Singh.
作者:
Jha, Bhagwanjee.
其他作者:
Singh, Devendra Narain.
出版者:
Singapore : : Springer Singapore :, 2016.
面頁冊數:
xxx, 211 p. : : ill., digital ;; 24 cm.
Contained By:
Springer eBooks
標題:
Zeolites.
標題:
Fly ash.
標題:
Materials Science.
標題:
Characterization and Evaluation of Materials.
標題:
Industrial Chemistry/Chemical Engineering.
標題:
Geoengineering, Foundations, Hydraulics.
標題:
Geotechnical Engineering & Applied Earth Sciences.
ISBN:
9789811014048
ISBN:
9789811014024
內容註:
Introduction -- Basics of zeolites -- Conventional Methods for synthesis of fly ash zeolites -- Mechanism of Zeolitization of Fly Ash -- Novel Techniques for Synthesis & Characterization of Fly Ash Zeolites -- Applications of Fly Ash Zeolites: Case Studies -- Future Scope on Fly Ash Zeolites.
摘要、提要註:
This book presents a thorough review of the state-of-knowledge and recent innovations in the synthesis of pure and improved grades of fly ash zeolites (FAZ) Addressing improvements to conventional methods, it also showcases a novel technique for the synthesis of high cation exchangers from fly ash and detailed characterization techniques for the products obtained. In addition, it examines in detail various areas of specific applications of fly ash zeolites. Over the years, several methods such as hydrothermal, fusion prior to hydrothermal, microwave assisted hydrothermal and molten salt techniques for producing FAZ have been developed. However, one-step and two-step reactions between the fly ash and alkali usually generate alkaline wastes that may cause environmental contamination. In addition, the separation of FAZ from the partially activated fly ash (the impurities) remains a major concern for researchers and industrialists alike. In view of these challenges, this book presents a novel technique for three-step activation (TSA), which focuses on recycling the fly ash-NaOH-water reaction by-products until zeolitic residue is formed. The FAZ (the final residue after third step reactions) synthesized in this manner exhibits exceptionally high cation exchange capacity, specific surface area and pore area. This book offers a comprehensive compendium of reading material on fly ash and its recycled product, the zeolites. Students at both undergraduate and graduate levels, researchers, and practicing engineers will all find this book to be a valuable guide in their respective fields.
電子資源:
http://dx.doi.org/10.1007/978-981-10-1404-8
Fly ash zeolites[electronic resource] :innovations, applications, and directions /
Jha, Bhagwanjee.
Fly ash zeolites
innovations, applications, and directions /[electronic resource] :by Bhagwanjee Jha, Devendra Narain Singh. - Singapore :Springer Singapore :2016. - xxx, 211 p. :ill., digital ;24 cm. - Advanced structured materials,v.781869-8433 ;. - Advanced structured materials ;v.13..
Introduction -- Basics of zeolites -- Conventional Methods for synthesis of fly ash zeolites -- Mechanism of Zeolitization of Fly Ash -- Novel Techniques for Synthesis & Characterization of Fly Ash Zeolites -- Applications of Fly Ash Zeolites: Case Studies -- Future Scope on Fly Ash Zeolites.
This book presents a thorough review of the state-of-knowledge and recent innovations in the synthesis of pure and improved grades of fly ash zeolites (FAZ) Addressing improvements to conventional methods, it also showcases a novel technique for the synthesis of high cation exchangers from fly ash and detailed characterization techniques for the products obtained. In addition, it examines in detail various areas of specific applications of fly ash zeolites. Over the years, several methods such as hydrothermal, fusion prior to hydrothermal, microwave assisted hydrothermal and molten salt techniques for producing FAZ have been developed. However, one-step and two-step reactions between the fly ash and alkali usually generate alkaline wastes that may cause environmental contamination. In addition, the separation of FAZ from the partially activated fly ash (the impurities) remains a major concern for researchers and industrialists alike. In view of these challenges, this book presents a novel technique for three-step activation (TSA), which focuses on recycling the fly ash-NaOH-water reaction by-products until zeolitic residue is formed. The FAZ (the final residue after third step reactions) synthesized in this manner exhibits exceptionally high cation exchange capacity, specific surface area and pore area. This book offers a comprehensive compendium of reading material on fly ash and its recycled product, the zeolites. Students at both undergraduate and graduate levels, researchers, and practicing engineers will all find this book to be a valuable guide in their respective fields.
ISBN: 9789811014048
Standard No.: 10.1007/978-981-10-1404-8doiSubjects--Topical Terms:
486258
Zeolites.
LC Class. No.: QE391.Z5
Dewey Class. No.: 549.68
Fly ash zeolites[electronic resource] :innovations, applications, and directions /
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Introduction -- Basics of zeolites -- Conventional Methods for synthesis of fly ash zeolites -- Mechanism of Zeolitization of Fly Ash -- Novel Techniques for Synthesis & Characterization of Fly Ash Zeolites -- Applications of Fly Ash Zeolites: Case Studies -- Future Scope on Fly Ash Zeolites.
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This book presents a thorough review of the state-of-knowledge and recent innovations in the synthesis of pure and improved grades of fly ash zeolites (FAZ) Addressing improvements to conventional methods, it also showcases a novel technique for the synthesis of high cation exchangers from fly ash and detailed characterization techniques for the products obtained. In addition, it examines in detail various areas of specific applications of fly ash zeolites. Over the years, several methods such as hydrothermal, fusion prior to hydrothermal, microwave assisted hydrothermal and molten salt techniques for producing FAZ have been developed. However, one-step and two-step reactions between the fly ash and alkali usually generate alkaline wastes that may cause environmental contamination. In addition, the separation of FAZ from the partially activated fly ash (the impurities) remains a major concern for researchers and industrialists alike. In view of these challenges, this book presents a novel technique for three-step activation (TSA), which focuses on recycling the fly ash-NaOH-water reaction by-products until zeolitic residue is formed. The FAZ (the final residue after third step reactions) synthesized in this manner exhibits exceptionally high cation exchange capacity, specific surface area and pore area. This book offers a comprehensive compendium of reading material on fly ash and its recycled product, the zeolites. Students at both undergraduate and graduate levels, researchers, and practicing engineers will all find this book to be a valuable guide in their respective fields.
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