Fly Ash Zeolites

Fly Ash Zeolites
Author: Bhagwanjee Jha
Publisher: Springer
Total Pages: 233
Release: 2016-05-27
Genre: Technology & Engineering
ISBN: 9811014043

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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. /divIn 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.

Properties and Use of Coal Fly Ash

Properties and Use of Coal Fly Ash
Author: Lindon K.A. Sear
Publisher: Thomas Telford
Total Pages: 278
Release: 2001-10-15
Genre: Science
ISBN: 9780727730152

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This book draws together a large quantity of research that has been carried out on pulverised fuel ash (PFA) over the past 30 years.In addition to covering the potential uses of PFA it provides an overview of the benefits of use.

Fly Ash in Concrete

Fly Ash in Concrete
Author: R C Joshi
Publisher: CRC Press
Total Pages: 290
Release: 1997-11-13
Genre: Technology & Engineering
ISBN: 9789056995805

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Since it was first recognized as a mineral admixture for concrete in the 1930's, fly ash has been the subject of worldwide study as researchers work to maximize its economical and environmental benefits. In recent years, investigations have focused on the physical, chemical and mineralogical characteristics of fly ash and their specific correlation to the performance of concrete. This book collects the latest results from these various studies and offers a complete review of the advantages of fly ash as an admixture in concrete, including strength development and improved chemical resistance and durability. A review of the current international standards on fly ash usage is provided, in addition to an extensive reference list and a complete survey of various other fly ash products, such as bricks, mineral wool and gypsum wall boards, as well as the use of fly ash in waste management.

Fly Ash in Concrete

Fly Ash in Concrete
Author: K. Wesche
Publisher: CRC Press
Total Pages: 298
Release: 2004-03-01
Genre: Architecture
ISBN: 0203626419

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This book is a state-of-the-art report which documents current knowledge on the properties of fly ash in concrete and the use of fly ash in construction. It includes RILEM Recommendations on fly ash in concrete and a comprehensive bibliography including over 800 references.

Fly Ash

Fly Ash
Author: Jacob Parker
Publisher:
Total Pages: 279
Release: 2017
Genre: TECHNOLOGY & ENGINEERING
ISBN: 9781536105339

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Updating Physical and Chemical Characteristics of Fly Ash for Use in Concrete

Updating Physical and Chemical Characteristics of Fly Ash for Use in Concrete
Author: Prasanth Tanikella
Publisher:
Total Pages:
Release: 2018-02-15
Genre:
ISBN: 9781622604845

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When incorporated in concrete mixtures, fly ashes are known to influence both its fresh and hardened properties. An accurate and quick technique to predict the extent of this influence based on the characteristics of fly ash would be highly beneficial in terms of field applications. The current study was an attempt to quantify the effects of fly ashes on the properties of pastes as a function of: (a) the mean particle size of the fly ash particles, (b) their fineness and (c) their chemical composition. In addition, since the type and the amount of glass present in the fly ash significantly affect its reactivity, this property was also included in the investigation.Twenty different fly ashes (both, ASTM Class C and Class F), obtained from power plants in and around Indiana, were characterized during the Phase 1 of the study. The information collected included: physical characteristics, chemical composition and the amount and type of glass present. Phase 2 of the study consisted of evaluation of various properties of binary paste systems (portland cement with 20% of cement of fly replacement). The evaluated properties included: the set time, the heat of hydration, the strength activity index, the non-evaporable water content and the amount of calcium hydroxide formed at different ages.These results obtained from both phases of the study were used to build statistical models for prediction of previously evaluated properties for any hypothetical fly ash with similar characteristics. The models included only the most significant variables, i.e., those which were found to most strongly affect any specific property. The variables to be included in the model were selected based on the adjusted R2 values.As a result of the modeling process, it was found that the sets of statistically significant variables affecting the properties consisted of both physical and chemical characteristics of the fly ash and that the combination of these variables was unique for each property evaluated.

Coal Fly Ash

Coal Fly Ash
Author: Miriam Gray (Materials researcher)
Publisher:
Total Pages:
Release: 2018
Genre: Asphalt emulsion mixtures
ISBN: 9781536145120

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"Due to rising energy demand, the amount of coal utilization is escalating at a fast rate, leading to a rise in ash generation. Coal Fly Ash: Properties, Applications and Performance begins by presenting a study wherein the physiochemical properties of coal ash were analysed and based on that, their potential for reuse was identified. Next, the synergy between Portland cement and coal fly ash was investigated. Raw materials were characterized in terms of chemical and mineralogical composition and physical properties. Mortars were manufactured and the effect of the addition of different ratios of coal fly ash (0-80 wt %) as a partial substitute of Portland cement was studied. Following this, an investigation was carried out to explore the behaviour of coal ash with hydrated lime as mineral filler in hot mix asphalt, in an attempt to determine a sustainable solution for the management of coal ash in Mauritius. The closing chapter describes the synthesis process used to obtain zeolite Na-A from coal fly ash via fusion with NaOH followed by hydrothermal reaction. Coal fly ash is a low cost source of both silica and alumina. The molar ratio of SiO2/Al2O3 for zeolite 4A formation was achieved through the addition of sodium aluminate solution/aluminum waste as aluminum sources"--

Treatment of Fly Ash to Increase Its Cementitious Characteristics

Treatment of Fly Ash to Increase Its Cementitious Characteristics
Author: Ahmad Samadi
Publisher:
Total Pages: 96
Release: 1996
Genre:
ISBN:

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This dissertation focuses on converting fly ash to a cementitious material to be used in making a unique concrete with no use of Portland cement. This new material is called Ashcrete. The role of the treated fly ash in Ashcrete is analogous to that of cement in making conventional concrete. In other words, Ashcrete is a concrete where the cement is substituted with treated fly ash. The development of Ashcrete consisted of four stages. In the first stage fly ash was chemically treated with sodium silicate solution (SiO$/sb2$ Na$/sb2$O) and sodium hydroxide (NaOH) at an elevated temperature, producing a zeolitic material. The zeolitic material was then used to produce Ashcrete.