Potentiometric Sensor for Real-Time Monitoring of Multivalent Ion Concentrations in Molten Salt

Potentiometric Sensor for Real-Time Monitoring of Multivalent Ion Concentrations in Molten Salt
Title Potentiometric Sensor for Real-Time Monitoring of Multivalent Ion Concentrations in Molten Salt PDF eBook
Author
Publisher
Pages
Release 2010
Genre
ISBN

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Electrorefining of spent metallic nuclear fuel in high temperature molten salt systems is a core technology in pyroprocessing, which in turn plays a critical role in the development of advanced fuel cycle technologies. In electrorefining, spent nuclear fuel is treated electrochemically in order to effect separations between uranium, noble metals, and active metals, which include the transuranics. The accumulation of active metals in a lithium chloride-potassium chloride (LiCl-KCl) eutectic molten salt electrolyte occurs at the expense of the UCl3-oxidant concentration in the electrolyte, which must be periodically replenished. Our interests lie with the accumulation of active metals in the molten salt electrolyte. The real-time monitoring of actinide concentrations in the molten salt electrolyte is highly desirable for controlling electrochemical operations and assuring materials control and accountancy. However, real-time monitoring is not possible with current methods for sampling and chemical analysis. A new solid-state electrochemical sensor is being developed for real-time monitoring of actinide ion concentrations in a molten salt electrorefiner. The ultimate function of the sensor is to monitor plutonium concentrations during electrorefining operations, but in this work gadolinium was employed as a surrogate material for plutonium. In a parametric study, polycrystalline sodium beta double-prime alumina (Na-ß?-alumina) discs and tubes were subject to vapor-phase exchange with gadolinium ions (Gd3+) using a gadolinium chloride salt (GdCl3) as a precursor to produce gadolinium beta double-prime alumina (Gd-ß?-alumina) samples. Electrochemical impedance spectroscopy and microstructural analysis were performed on the ion-exchanged discs to determine the relationship between ion exchange and Gd3+ ion conductivity. The ion-exchanged tubes were configured as potentiometric sensors in order to monitor real-time Gd3+ ion concentrations in mixtures of gadolinium chloride (GdCl3) in LiCl-KCl eutectic molten salts through measurement of the potential difference between a reference and working electrode.

Potentiometric Sensor for Real-Time Remote Surveillance of Actinides in Molten Salts

Potentiometric Sensor for Real-Time Remote Surveillance of Actinides in Molten Salts
Title Potentiometric Sensor for Real-Time Remote Surveillance of Actinides in Molten Salts PDF eBook
Author
Publisher
Pages
Release 2012
Genre
ISBN

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A potentiometric sensor is being developed at the Idaho National Laboratory for real-time remote surveillance of actinides during electrorefining of spent nuclear fuel. During electrorefining, fuel in metallic form is oxidized at the anode while refined uranium metal is reduced at the cathode in a high temperature electrochemical cell containing LiCl-KCl-UCl3 electrolyte. Actinides present in the fuel chemically react with UCl3 and form stable metal chlorides that accumulate in the electrolyte. This sensor will be used for process control and safeguarding of activities in the electrorefiner by monitoring the concentrations of actinides in the electrolyte. The work presented focuses on developing a solid-state cation conducting ceramic sensor for detecting varying concentrations of trivalent actinide metal cations in eutectic LiCl-KCl molten salt. To understand the basic mechanisms for actinide sensor applications in molten salts, gadolinium was used as a surrogate for actinides. The ß?-Al2O3 was selected as the solid-state electrolyte for sensor fabrication based on cationic conductivity and other factors. In the present work Gd3+-ß?-Al2O3 was prepared by ion exchange reactions between trivalent Gd3+ from GdCl3 and K+-, Na+-, and Sr2+-ß?-Al2O3 precursors. Scanning electron microscopy (SEM) was used for characterization of Gd3+-ß?-Al2O3 samples. Microfocus X-ray Diffraction (μ-XRD) was used in conjunction with SEM energy dispersive X-ray spectroscopy (EDS) to identify phase content and elemental composition. The Gd3+-ß?-Al2O3 materials were tested for mechanical and chemical stability by exposing them to molten LiCl-KCl based salts. The effect of annealing on the exchanged material was studied to determine improvements in material integrity post ion exchange. The stability of the ß?-Al2O3 phase after annealing was verified by μ-XRD. Preliminary sensor tests with different assembly designs will also be presented.

Development of Near-real Time Material Detection and Analysis by Coupling Electrochemical & Optical Spectroscopy Methods for Molten Salt Systems

Development of Near-real Time Material Detection and Analysis by Coupling Electrochemical & Optical Spectroscopy Methods for Molten Salt Systems
Title Development of Near-real Time Material Detection and Analysis by Coupling Electrochemical & Optical Spectroscopy Methods for Molten Salt Systems PDF eBook
Author Hunter Brock Andrews
Publisher
Pages 221
Release 2020
Genre Fused salts
ISBN

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For both pyroprocessing and molten salt reactors (M.S. Rs), it is desirable from a process control and nuclear safeguards perspective to monitor the species in the molten salts for material accountancy. Many traditional monitoring techniques, even simple salt sample retrieval, are time exhaustive or rendered useless for these systems due to the high thermal loads, high radiation zones, and corrosive nature of molten salts. Therefore, the main motivation for this work is the need for an online monitoring system for a molten salt system that is robust enough to handle the extreme environment yet deliver quantifiable salt concentrations. The intent of this dissertation is to demonstrate the combined use of cyclic voltammetry (CV) and laser-induced breakdown spectroscopy (LIBS) as an analytical technique for quantifying the concentration of species in the molten salt medium, mainly LiCl-KCl eutectic. CV is a robust electrochemical method that can be run without interruption and at varying speeds while LIBS has desirable qualities such as little to no sample preparation, low limits of detection (LOD), and rapid analysis. Three experimental programs were developed to demonstrate the parallel and eventual combined use of these methods. The first investigates the parallel use of CV and LIBS on a SmCl3 salt system. The second focuses on improvements to the experimental system and adds GdCl3 as an additional salt component. The final experimental program focuses on combining CV and LIBS through sensor fusion to monitor UCl[subscript3], GdCl[subscript3], and MgCl[subscript2] simultaneously in a LiCl-KCl salt system.

Anion Receptor Chemistry

Anion Receptor Chemistry
Title Anion Receptor Chemistry PDF eBook
Author Jonathan L Sessler
Publisher Royal Society of Chemistry
Pages 431
Release 2007-10-31
Genre Science
ISBN 1847552471

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Anion recognition plays a critical role in a range of biological processes, and a variety of receptors and carriers can be found throughout the natural world. Chemists working in the area of supramolecular chemistry have created a range of anion receptors, drawing inspiration from nature as well as their own inventive processes. This book traces the origins of anion recognition chemistry as a unique sub-field in supramolecular chemistry while illustrating the basic approaches currently being used to effect receptor design. The combination of biological overview and summary of current synthetic approaches provides a coverage that is both comprehensive and comprehensible. First, the authors detail the key design motifs that have been used to generate synthetic receptors and which are likely to provide the basis for further developments. They also highlight briefly some of the features that are present in naturally occurring anion recognition and transport systems and summarise the applications of anion recognition chemistry. Providing as it does a detailed review for practitioners in the field and a concise introduction to the topic for newcomers, Anion Receptor Chemistry reflects the current state of the art. Fully referenced and illustrated in colour, it is a welcome addition to the literature.

Ion-Selective Electrodes

Ion-Selective Electrodes
Title Ion-Selective Electrodes PDF eBook
Author Konstantin N. Mikhelson
Publisher Springer Science & Business Media
Pages 170
Release 2013-04-02
Genre Science
ISBN 3642368867

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Ion-selective electrodes (ISEs) have a wide range of applications in clinical, environmental, food and pharmaceutical analysis as well as further uses in chemistry and life sciences. Based on his profound experience as a researcher in ISEs and a course instructor, the author summarizes current knowledge for advanced teaching and training purposes with a particular focus on ionophore-based ISEs. Coverage includes the basics of measuring with ISEs, essential membrane potential theory and a comprehensive overview of the various classes of ion-selective electrodes. The principles of constructing ISEs are outlined, and the transfer of methods into routine analysis is considered. Advanced students, researchers, and practitioners will benefit from this expedient introduction.

Combinatorial Methods for Chemical and Biological Sensors

Combinatorial Methods for Chemical and Biological Sensors
Title Combinatorial Methods for Chemical and Biological Sensors PDF eBook
Author Radislav A. Potyrailo
Publisher Springer Science & Business Media
Pages 495
Release 2009-03-21
Genre Science
ISBN 0387737138

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Chemical sensors are in high demand for applications as varied as water pollution detection, medical diagnostics, and battlefield air analysis. Designing the next generation of sensors requires an interdisciplinary approach. The book provides a critical analysis of new opportunities in sensor materials research that have been opened up with the use of combinatorial and high-throughput technologies, with emphasis on experimental techniques. For a view of component selection with a more computational perspective, readers may refer to the complementary volume of Integrated Analytical Systems edited by M. Ryan et al., entitled “Computational Methods for Sensor Material Selection”.

Metal Nanoclusters in Catalysis and Materials Science: The Issue of Size Control

Metal Nanoclusters in Catalysis and Materials Science: The Issue of Size Control
Title Metal Nanoclusters in Catalysis and Materials Science: The Issue of Size Control PDF eBook
Author Benedetto Corain
Publisher Elsevier
Pages 471
Release 2011-08-11
Genre Technology & Engineering
ISBN 0080555004

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Metal Nanoclusters in Catalysis and Materials Science: The Issue of Size Control deals with the synthesis of metal nanoclusters along all known methodologies. Physical and chemical properties of metal nanoclusters relevant to their applications in chemical processing and materials science are covered thoroughly. Special attention is given to the role of metal nanoclusters size and shape in catalytic processes and catalytic applications relevant to industrial chemical processing.An excellent text for expanding the knowledge on the chemistry and physics of metal nanoclusters. Divided in two parts; Part I deals with general aspects of the matter and Part II has to be considered a useful handbook dealing with the production of metal nanoclusters, especially from their size-control point of view.* Divided into two parts for ease of reference: general and operational * Separation of synthetic aspects, physical properties and applications* Specific attention is given to the task of metal nanoclusters size-control