chemically bonded phosphate ceramics

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Chemically Bonded Phosphate Ceramics
Author :
Publisher : Elsevier
Release Date :
ISBN 10 : 008100396X
Pages : 422 pages
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This book brings together the latest developments in chemically bonded phosphate ceramics (CBPCs), including several novel ceramics, from US Federal Laboratories such as Argonne, Oak Ridge, and Brookhaven National Laboratories, as well as Russian and Ukrainian nuclear institutes. Coupled with further advances in their use as biomaterials, these materials have found uses in diverse fields in recent years. Applications range from advanced structural materials to corrosion and fire protection coatings, oil-well cements, stabilization and encapsulation of hazardous and radioactive waste, nuclear radiation shielding materials, and products designed for safe storage of nuclear materials. Such developments call for a single source to cover their science and applications. This book is a unique and comprehensive source to fulfil that need. In the second edition, the author covers the latest developments in nuclear waste containment and introduces new products and applications in areas such as biomedical implants, cements and coatings used in oil-well and other petrochemical applications, and flame-retardant anti-corrosion coatings. Explores the key applications of CBPCs including nuclear waste storage, oil-well cements, anticorrosion coatings and biomedical implants Demystifies the chemistry, processes and production methods of CBPCs Draws on 40 years of developments and applications in the field, including the latest developments from USA, Europe, Ukraine, Russia, China and India

Chemically Bonded Phosphate Ceramics

This book brings together the latest developments in chemically bonded phosphate ceramics (CBPCs), including several novel ceramics, from US Federal Laboratories such as Argonne, Oak Ridge, and Brookhaven National Laboratories, as well as Russian and Ukrainian nuclear institutes. Coupled with further advances in their use as biomaterials, these materials have

GET BOOK!
Chemically Bonded Phosphate Ceramics

This book brings together the latest developments in chemically bonded phosphate ceramics (CBPCs), including several novel ceramics, from US Federal Laboratories such as Argonne, Oak Ridge, and Brookhaven National Laboratories, as well as Russian and Ukrainian nuclear institutes. Coupled with further advances in their use as biomaterials, these materials have

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Chemically Bonded Phosphate Ceramics for Low level Mixed Waste Stabilization

Download or read online Chemically Bonded Phosphate Ceramics for Low level Mixed Waste Stabilization written by Anonim, published by Unknown which was released on 1994. Get Chemically Bonded Phosphate Ceramics for Low level Mixed Waste Stabilization Books now! Available in PDF, ePub and Kindle.

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Investigation of Chemically Bonded Phosphate Ceramics cements and Applicability of Magnesium Potassium Phosphate Cements as Wellbore Sealants in the Oil   Gas Industry

Cementing jobs especially in arctic regions and/or geothermal fields in the oil and gas industry pose significant challenges and demand critical mechanical properties on cements. Researchers propose that chemically bonded phosphate ceramics/cements (CBPC) can successfully be used as wellbore sealants where conventional Portland cement systems fail to meet

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Method for Producing Chemically Bonded Phosphate Ceramics and for Stabilizing Contaminants Encapsulated Therein Utilizing Reducing Agents

Known phosphate ceramic formulations are improved and the ability to produce iron-based phosphate ceramic systems is enabled by the addition of an oxidizing or reducing step during the acid-base reactions that form the phosphate ceramic products. The additives allow control of the rate of the acid-base reactions and concomitant heat

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Nanostructural Bioceramics

Biomaterials are produced in situ and in vivo in the body using mainly hydration reactions, that is, reactions between phosphates, silicates or aluminates, and water. The nanostructural integration of these biomaterials in the body is controlled by six mechanisms. The biomaterial interaction with body liquid results in bioactivity and total

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Chemically Bonded Phosphate Ceramics of Trivalent Oxides of Iron and Manganese

A new method for combining elemental iron and other metals to form an inexpensive ceramic to stabilize arsenic, alkaline red mud wastes, swarfs, and other iron or metal-based additives, to create products and waste forms which can be poured or dye cast.

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Mercury Stabilization in Chemically Bonded Phosphate Ceramics

Mercury stabilization and solidification is a significant challenge for conventional stabilization technologies. This is because of the stringent regulatory limits on leaching of its stabilized products. In a conventional cement stabilization process, Hg is converted at high pH to its hydroxide, which is not a very insoluble compound; hence the

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Stabilization of Low level Mixed Waste in Chemically Bonded Phosphate Ceramics

Mixed waste streams, which contain both chemical and radioactive wastes, are one of the important categories of DOE waste streams needing stabilization for final disposal. Recent studies have shown that chemically bonded phosphate ceramics may have the potential for stabilizing these waste streams, particularly those containing volatiles and pyrophorics. Such

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Method of Waste Stabilization Via Chemically Bonded Phosphate Ceramics

A method for regulating the reaction temperature of a ceramic formulation process is provided comprising supplying a solution containing a monovalent alkali metal; mixing said solution with an oxide powder to create a binder; contacting said binder with bulk material to form a slurry; and allowing the slurry to cure.

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Apatites and their Synthetic Analogues

Apatite-type minerals and their synthetic analogues are of interest of many industrial branches and scientific disciplines including material sciences, chemical industry, agriculture, geology, medicine and dentistry. This book provides a basic overview of general knowledges of this topic in order to provide the comprehensive survey from a scientific and technological

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Chemically Bonded Phosphate Ceramics for Radioactive and Mixed Waste Solidification and Stabilization

Results of an initial investigation of low temperature setting chemically bonded magnesium ammonium phosphate (MAP) ceramics as waste form materials, for solidification and stabilization of radioactive and mixed waste, are reported. The suitability of MAP for solidifying and encapsulating waste materials was tested by encapsulating zeolites at loadings up to [

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Iron phosphate based Chemically Bonded Phosphate Ceramics for Mixed Waste Stabilization

In an effort to develop chemically bonded phosphate ceramics for mixed waste stabilization, a collaborative project to develop iron-phosphate based ceramics has been initiated between Argonne National Laboratory and the V.G. Khlopin Radium Institute in St. Petersburg, Russia. The starter powders are oxides of iron that are generated as

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Development of Chemically Bonded Phosphate Ceramics for Stabilizing Low level Mixed Wastes

Download or read online Development of Chemically Bonded Phosphate Ceramics for Stabilizing Low level Mixed Wastes written by Seung-Young Jeong, published by Unknown which was released on 1997. Get Development of Chemically Bonded Phosphate Ceramics for Stabilizing Low level Mixed Wastes Books now! Available in PDF, ePub and Kindle.

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Chemically Bonded Phosphate Ceramics for Radioactive and Mixed Waste Solidification and Stabilization

Download or read online Chemically Bonded Phosphate Ceramics for Radioactive and Mixed Waste Solidification and Stabilization written by Anonim, published by Unknown which was released on 1993. Get Chemically Bonded Phosphate Ceramics for Radioactive and Mixed Waste Solidification and Stabilization Books now! Available in PDF, ePub and Kindle.

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