Explaining the methods and precautions for understanding and utilizing the particle size and characteristics of powdery materials and porous materials.
Powders, fine particles, and porous materials have a large specific surface area, and their particle size, specific surface area, pore distribution, shape, components, composition, and structure are all complex. Therefore, it is important to correctly understand these characteristics in order to achieve the desired functions and performance as well as to handle them properly. This book is a concise compilation of information that leads to practical problem-solving, created by experienced experts and leading researchers in cutting-edge evaluation methods. We encourage you to keep it on hand as a practical guide for product development and handling.
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Publication Date: June 26, 2015 Format: A4 size, hardcover, 258 pages ISBN: 978-4-907002-45-9 C Code: 3058 Author: Mr. Shigetoshi Endo / Research and Development Organization for Single-Walled CNT Composite New Materials, among others
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64,800 yen (including tax) → STbook member price: 61,560 yen (including tax)
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International Standardization on Powder Technology: Environmental and Health Impact Assessment of Nanoparticles; Measurement and Evaluation Methods Required for Powder Handling; Measurement Techniques and Applications of Optical Properties of Atmospheric Aerosols; Measurement Methods for Powder Charge; Particle Size Measurement by Light; Single Nanoparticle Size Measurement by Induced Diffraction Grating Method; Multi-component Measurement of Powders by Visible and Infrared Hybrid Multi-component Measurement; Measurement of Zeta Potential; Evaluation of Particle Size and Dispersion Stability in Liquid; Measurement Techniques for Microparticles in Ultrapure Water; Measurement Principles and Data Interpretation of Powders and Porous Materials; Measurement of Specific Surface Area, Pore Distribution, and Pore Volume of Porous Materials by Gas Adsorption; Measurement of Specific Surface Area and Pore Distribution of Porous Materials by Mercury Intrusion Method; Characterization of Porous Materials by Thermoporometry; Evaluation and Analysis of Wettability Inside Porous Materials by Contact Porosimetry; New Evaluation Methods for Solvent Ingress Volume into Pore Particles and Particle Dispersion using Magnetic Susceptibility; Structural Evaluation of Porous Materials by Solid NMR; Structural Evaluation of Porous Materials by Positron Annihilation Lifetime Measurement; Evaluation of Powder Materials by Synchrotron Soft X-ray Absorption Spectroscopy; Neutron Small Angle Scattering of Powders and Porous Bodies; Evaluation of Regular Porous Materials by Electron Microscopy; Structural Observation of Nano Porous Materials by Scanning Electron Microscopy; Evaluation of Porous Membranes by Bubble Point Method, Gas Flow Method, and Streaming Potential Method.
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