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Minerals at the Nanoscale

Minerals at the Nanoscale
Author: F. Nieto
Publisher: The Mineralogical Society of Great Britain and Ireland
Total Pages: 456
Release: 2013-05-24
Genre: Science
ISBN: 0903056348

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The editors have gathered in this book, reviews of past and current studies of mineral groups that have played important roles in geology, environmental science and health science. The various chapters cover the application of TEM and related techniques to: mineral groups in which TEM investigations have been extensive and crucial to the understanding of their mineralogy, namely pyriboles, serpentines, clays, micas and other metamorphic phyllosilicates, oxides and oxyhydroxides, sulfides and carbonates. Some research fields for which TEM is particularly suitable and which have produced significant advances, in particular, are inclusions and traces, extraterrestrial material, deformation processes, non-stoichiometry and superstructures, and biominerals. Nowadays, we are witnessing the push for the improvement of detectors for imaging (direct detection of electrons) and X-rays (silicon drift detectors and annular high solid-angle of collection detectors), the development of new support materials (e.g. graphene) and liquid cells for TEMs. Most of these new technologies have not yet been applied to mineralogical problems but we hope they will be in the near future.


Minerals at the Nanoscale

Minerals at the Nanoscale
Author: Fernando Nieto García Nieto
Publisher:
Total Pages: 440
Release: 2013
Genre: Mineralogy
ISBN: 9780903056380

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The first transmission electron microscope (TEM) was built in the 1930s for which the inventor Ernst Ruska received a Nobel prize for Physics in 1986. Since those early years, Mineralogy has played an important role in the development of TEM methods and technology.


Functional Fillers and Nanoscale Minerals

Functional Fillers and Nanoscale Minerals
Author: Jon J. Kellar
Publisher: SME
Total Pages: 288
Release: 2006
Genre: Science
ISBN: 9780873352475

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Mineral additives are widespread in industrial manufacturing processes. So-called mineral fillers are used to extend raw materials and cut costs. Recently minerals and associated inorganics have frequently been used for their functionality and other mineral-specific qualities. The emergence of nanoscale minerals parallels the global pursuit of nanotechnology. The use of these minerals plays an important role in low-cost, high-performance application of nanotechnology. This 21-chapter compilation is for mineral suppliers, industrial users of mineral fillers, and those concerned with new trends in mineral processing and nanotechnology. Contributions by leading international researchers highlight the emerging markets and applications of functional fillers and nanoscale minerals.


Nanomaterials from Clay Minerals

Nanomaterials from Clay Minerals
Author: Aiqin Wang
Publisher: Elsevier
Total Pages: 693
Release: 2019-08-15
Genre: Technology & Engineering
ISBN: 012814534X

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Nanomaterials from Clay Minerals: A New Approach to Green Functional Materials details the structure, properties and modification of natural nanoscale clay minerals and their application as the green constituent of functional materials. Natural nanomaterials from clay minerals have diverse morphologies, from 1D to 3D, including nanorods, nanofibers, nanotubes, nanosheets and nanopores. These structures show excellent adsorption, reinforcing, supporter, electronic, catalytic and biocompatible properties and are great as sustainable alternatives for toxic or expensive artificial materials. This book provides systematic coverage of clay nanomaterials as eco-friendly resources, emphasizing the importance of such materials in a range of industries, including biomedicine, energy and electronics. This book will provide an important reference for materials scientists and engineers who have an interest in sustainable material development. Presents systematic coverage of a broad range of nanomaterials from clay minerals, including Kaolinite, Smectite and Halloysite Depicts use cases for each mineral in a variety of applications, such as drug delivery, agriculture, and in the reinforcement of polymer materials Provides an overview on the advantages and limitations of nanomaterials from clay minerals, as well as chapters on the future potential of such materials


Mineral Surface Reactions at the Nanoscale

Mineral Surface Reactions at the Nanoscale
Author: Christine V. Putnis
Publisher:
Total Pages: 220
Release: 2019
Genre: Geology
ISBN: 9783038978978

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Reactions at mineral surfaces are central to all geochemical processes. As minerals comprise the rocks of the Earth, the processes occurring at the mineral-aqueous fluid interface control the evolution of the rocks and hence the structure of the crust of the Earth during processes such as metamorphism, metasomatism, and weathering. In recent years focus has been concentrated on mineral surface reactions made possible through the development of advanced analytical methods such as atomic force microscopy (AFM), advanced electron microscopies (SEM and TEM), phase shift interferometry, confocal Raman spectroscopy, and advanced synchrotron-based applications, to enable mineral surfaces to be imaged and analyzed at the nanoscale. Experiments are increasingly complemented by molecular simulations to confirm or predict the results of these studies. This has enabled new and exciting possibilities to elucidate the mechanisms that govern mineral-fluid reactions. In this Special Issue, “Mineral Surface Reactions at the Nanoscale”, we present 12 contributions that highlight the role and importance of mineral surfaces in varying fields of research.


Mineral Surface Reactions at the Nanoscale

Mineral Surface Reactions at the Nanoscale
Author: Christine V. Putnis
Publisher: MDPI
Total Pages: 220
Release: 2019-05-20
Genre: Science
ISBN: 3038978965

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Reactions at mineral surfaces are central to all geochemical processes. As minerals comprise the rocks of the Earth, the processes occurring at the mineral–aqueous fluid interface control the evolution of the rocks and hence the structure of the crust of the Earth during processes such as metamorphism, metasomatism, and weathering. In recent years focus has been concentrated on mineral surface reactions made possible through the development of advanced analytical methods such as atomic force microscopy (AFM), advanced electron microscopies (SEM and TEM), phase shift interferometry, confocal Raman spectroscopy, and advanced synchrotron-based applications, to enable mineral surfaces to be imaged and analyzed at the nanoscale. Experiments are increasingly complemented by molecular simulations to confirm or predict the results of these studies. This has enabled new and exciting possibilities to elucidate the mechanisms that govern mineral–fluid reactions. In this Special Issue, “Mineral Surface Reactions at the Nanoscale”, we present 12 contributions that highlight the role and importance of mineral surfaces in varying fields of research.


Functional Fillers and Nanoscale Minerals

Functional Fillers and Nanoscale Minerals
Author: Chetna Saraswat
Publisher:
Total Pages: 0
Release: 2016
Genre: Fillers (Materials)
ISBN: 9781681174846

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Mineral fillers are used in industrial manufacturing processes to extend raw materials and cut costs, and more recently sometimes used for their functionality and other mineral-specific qualities. Mineral additives are widespread in industrial manufacturing processes. Another rapidly emerging technological area is that of nanoscale minerals. This emergence of nanoscale minerals parallels the global pursuit of nanotechnology; the use of nanoscale minerals will undoubtedly play an important role in low-cost, high-performance application of nanotechnology. The Functional Fillers and Nanoscale Minerals Symposium was first introduced at the 2003 SME Annual Meeting. The success of the first symposium led to the second symposium of the same name at the 2006 SME Annual Meeting.


Nanomineralogy

Nanomineralogy
Author: Yiwen Ju
Publisher: MDPI
Total Pages: 350
Release: 2020-12-14
Genre: Science
ISBN: 3039365991

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In 2018, the International Symposium on Nanogeoscience was held in Guiyang, China. Scholars from around the globe gathered to discuss recent progress and development trends in various aspects of nanogeoscience, including nanomineralogy. Nanomineralogy, an important aspect of nanogeoscience, focuses on the composition, structure, and physical and chemical properties of nanoscale minerals and their interrelations with other Earth critical components. To give a sampling of the latest progress in nanomineralogy and related fields, we offer this Special Issue, which describes a full range of recent nanomineralogic achievements relating to everything from nanominerals and geochemistry, mineral nanostructures, and nanomineral deformation, to nanopores in oil and gas reservoirs, nanomineral deposits, and nanomineral material. Today, nanomineralogy faces a new strategic opportunity as well as a revolutionary challenge. We thus present this special nanomineralogy-focused issue of Minerals with the aim of encouraging our colleagues to familiarize themselves with current developments, trends, and directions in nanomineralogy, enabling an understanding of the potential of the field as a whole. We look forward to developing further scientific research and cooperation in nanomineralogy, hoping thereby to attract and guide young scholars to participate in this field.


Application of Nanotechnology in Mining Processes

Application of Nanotechnology in Mining Processes
Author: Elvis Fosso-Kankeu
Publisher: John Wiley & Sons
Total Pages: 388
Release: 2022-03-02
Genre: Technology & Engineering
ISBN: 1119864992

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b”Application of Nanotechnology in Mining ProcessesNanotechnology has revolutionized processes in many industries but its application in the mining industry has not been widely discussed. This unique book provides an overview of the successful implementation of nanotechnology in some of the key environmental and beneficiation mining processes. This book explores extensively the potential of nanotechnology to revolutionize the mining industry which has been relying for a very long on processes with limited efficiencies. The nine specialized chapters focus on applying nanoflotation to improve mineral processing, effective extraction of metals from leachates or pregnant solutions using nanoscale supramolecular hosts, and development of nano-adsorbents or nano-based strategies for the remediation or valorization of AMD. The application of nanotechnology in mining has so far received little attention from the industry and researchers and this groundbreaking book features critical issues so far under-reported in the literature: Application of nanotechnology in mineral processing for the enhancement of froth flotation Development of smart nanomaterials and application for the treatment of acid mine drainage Recovery of values from pregnant solutions using nanoadsorbents Valorization of AMD through formation of multipurpose nanoproducts. Audience Industrial interest will be from mining plant operators, environmental managers, water treatment plants managers, and operators. Researchers in nanotechnology, environmental science, mining, and metallurgy engineering will find the book valuable, as will government entities such as regulatory bodies officers and environmentalists.


Nanoscale and Atomistic Processes in Minerals

Nanoscale and Atomistic Processes in Minerals
Author: Martin Herbert Reich Morales
Publisher:
Total Pages: 137
Release: 2006
Genre:
ISBN: 9780542922923

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Apart from, e.g., the gold-content dependence on the arsenic content of pyrite, the stability of nanoscale phases in geologic systems is strongly dependent on particle size and temperature. Results from heating experiments under high-resolution observation show that when incorporated in an arsenian pyrite host, gold nanoparticles become unstable unless the nanoparticle size-distribution is coarsened by Ostwald ripening. In this context, our observations reveal that gold nanoparticles remain stable until they start to coarsen into larger particles above ∼370°C. Therefore, nanoparticulate metals, usually thought to be prevalent at low-temperatures (T