Powder Technology
基本信息
An International Journal on the Science and Technology of Wet and Dry Particulate Systems Powder Technology is an International Journal on the Science and Technology of Wet and Dry Particulate Systems. Powder Technology publishes papers on all aspects of the formation of particles and their characterisation and on the study of systems containing particulate solids. No limitation is imposed on the size of the particles, which may range from nanometre scale, as in pigments or aerosols, to that of mined or quarried materials. The following list of topics is not intended to be comprehensive, but rather to indicate typical subjects which fall within the scope of the journal's interests: Formation and synthesis of particles by precipitation and other methods. Modification of particles by agglomeration, coating, comminution and attrition. Characterisation of the size, shape, surface area, pore structure and strength of particles and agglomerates (including the origins and effects of inter particle forces). Packing, failure, flow and permeability of assemblies of particles. Particle-particle interactions and suspension rheology. Handling and processing operations such as slurry flow, fluidization, pneumatic conveying. Interactions between particles and their environment, including delivery of particulate products to the body. Applications of particle technology in production of pharmaceuticals, chemicals, foods, pigments, structural, and functional materials and in environmental and energy related matters. For materials-oriented contributions we are looking for articles revealing the effect of particle/powder characteristics (size, morphology and composition, in that order) on material performance or functionality and, ideally, comparison to any industrial standard. Submissions will usually be overseen according to the following breakdown of specialties: L.S. Fan (The Ohio State University, USA) Fluidization, particulates and multiphase flows, particulates reaction engineering, modeling, measurements, and industrial processes and applications A. Teleki (Uppsala University, Sweden) Aerosols, nanoparticles, agglomeration, and functional material synthesis and applications C.Y. Wu (University of Surrey, UK) Particle characterization, particle mechanics, powder processing and handling, modeling and simulation A.B. Yu (Monash University, Australia) Granular dynamics and particle-fluid flow, particulate/granular systems and bulk solids handling, particle packing and structural analysis, comminution and attrition, material synthesis, process engineering and industrial applications J.S. Curtis (University of California, Davis) Computational fluid dynamics and software development, modeling of particulate flow phenomena, application to granular and multiphase flows, fluid and particle mechanics, fluidization
CiteScore
| 学科 | 排名 | 百分位 |
|---|---|---|
Chemical EngineeringGeneral Chemical Engineering |
33 / 273 | 88% |
期刊统计
投稿信息
投稿网址:
https://www.editorialmanager.com/POWTEC收录体裁:
Review articles
Short communications
Letters to the editors
Book reviews
相关文献
Development of new auxiliary basis functions of the Karlsruhe segmented contracted basis sets including diffuse basis functions (def2-SVPD, def2-TZVPPD, and def2-QVPPD) for RI-MP2 and RI-CC calculations
Arnim Hellweg, Dmitrij Rappoport
DOI: 10.1039/C4CP04286G
In situ non-aqueous nucleation and growth of next generation rare-earth-free permanent magnets
Aoran Xu, George E. Sterbinsky, Dario A. Arena, Ziying Wang, Peter W. Stephens
DOI: 10.1039/C4CP04451G
“Tschitschibabin type biradicals”: benzenoid or quinoid?
Prince Ravat, Martin Baumgarten
DOI: 10.1039/C4CP03522D
Reverse hydrotropy by complex formation
Kamil Wojciechowski, Thomas Gutberlet, Vikram Singh Raghuwanshi, Ann Terry
DOI: 10.1039/C4CP03835E
Intermediates caught in the act: tracing insulin amyloid fibril formation in time by combined optical spectroscopy, light scattering, mass spectrometry and microscopy
A. Gladytz, T. Häupl, K. R. Siefermann
DOI: 10.1039/C4CP03072A
On the nature of hydrogen bonds to platinum(ii) – which interaction can predict their strength?
Rocío Sánchez-de-Armas, Mårten S. G. Ahlquist
DOI: 10.1039/C4CP04657A
Oxygen vacancy and hole conduction in amorphous TiO2
Hieu H. Pham, Lin-Wang Wang
DOI: 10.1039/C4CP04209C
Dirac fermions in silicene on Pb(111) surface
Agata Podsiadły-Paszkowska, Mariusz Krawiec
DOI: 10.1039/C4CP05104A
Water and polymer dynamics in a model polysaccharide hydrogel: the role of hydrophobic/hydrophilic balance
V. Venuti, F. D'Amico, A. Gessini, F. Castiglione, C. Punta, L. Melone, V. Crupi, D. Majolino, F. Trotta, C. Masciovecchio
DOI: 10.1039/C4CP04045G
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