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Particuology
基本信息
期刊名称 Particuology
PARTICUOLOGY
期刊ISSN 1674-2001
期刊官方网站 https://www.sciencedirect.com/journal/particuology
是否OA No
出版商 Elsevier B.V.
出版周期 Bimonthly
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始发年份
年文章数 257
影响因子 4.1(2023)  scijournal影响因子  greensci影响因子
中科院SCI期刊分区
大类学科 小类学科 Top 综述
工程技术2区 ENGINEERING, CHEMICAL 工程:化工2区
MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合2区
CiteScore
CiteScore排名 CiteScore SJR SNIP
学科 排名 百分位 6.7 0.627 1.023
Chemical Engineering
General Chemical Engineering
71/273 74%
Materials Science
General Materials Science
122/463 73%
补充信息
自引率 7.3%
H-index 48
SCI收录状况 Science Citation Index Expanded
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PubMed Central (PMC) http://www.ncbi.nlm.nih.gov/nlmcatalog?term=1674-2001%5BISSN%5D
投稿指南
期刊投稿网址 https://www.editorialmanager.com/PARTIC
收稿范围
The word 'particuology was coined to parallel the discipline for the science and technology of particles.

Particuology is an interdisciplinary journal that publishes frontier research articles and critical reviews on the discovery, formulation and engineering of particulate materials, processes and systems. It especially welcomes contributions utilising advanced theoretical, modelling and measurement methods to enable the discovery and creation of new particulate materials, and the manufacturing of functional particulate-based products, such as sensors.

Papers are handled by Thematic Editors who oversee contributions from specific subject fields. These fields are classified into: Particle Synthesis and Modification; Particle Characterization and Measurement; Granular Systems and Bulk Solids Technology; Fluidization and Particle-Fluid Systems; Aerosols; and Applications of Particle Technology.

Key topics concerning the creation and processing of particulates include:
Modelling and simulation of particle formation, collective behaviour of particles and systems for particle production over a broad spectrum of length scales
Mining of experimental data for particle synthesis and surface properties to facilitate the creation of new materials and processes
Particle design and preparation including controlled response and sensing functionalities in formation, delivery systems and biological systems, etc.
Experimental and computational methods for visualization and analysis of particulate system


These topics are broadly relevant to the production of materials, pharmaceuticals and food, and to the conversion of energy resources to fuels and protection of the environment.

With a focus on new learning related to complex multi-scale systems and phenomena, Particuology especially welcomes and now provides a platform for themes related to meso-science. This emerging field recognises that common phenomena can be observed across length scales ranging from elemental particles through to that of the observable universe. Since particulate systems are ubiquitous in various fields, this initiative extends the scope of the journal, while maintaining a focus on the common scientific challenges for these fields.
收录体裁
 full length papers
shorter communications
投稿指南 https://www.sciencedirect.com/journal/particuology/publish/guide-for-authors
投稿模板
参考文献格式 https://www.elsevier.com/journals/particuology/1674-2001/guide-for-authors
编辑信息
Editor-in-Chief

Jinghai Li

Chinese Academy of Sciences (CAS), Beijing, China
Executive Editor

Wei Wang

Chinese Academy of Sciences (CAS), Beijing, China 
Regional Editors

Alexis Bell

University of California at Berkeley, Berkeley, USA 

Cordelia Selomulya

Monash University, Clayton, Victoria, Australia

Richard A. Williams

Heriot-Watt University, Edinburgh, Scotland, UK 
Thematic Editors

Judith Chow

Desert Research Institute, Reno, Nevada, USA 

Stefan Heinrich

Technische Universität Hamburg-Harburg (TUHH), Hamburg, Germany 

Jerry Heng

Imperial College London, London, UK 
International Advisory Board

H. Bi

University of British Columbia, Canada

J. Bridgewater

Cambridge University, UK

X.-S. Cai

University of Shanghai for Science & Technology

J. Cao

Institute of Earth Environment, Chinese Academy of Sciences (CAS), China

J. Chen

Chinese Academy of Engineering, China

Y.-F. Chen

Institute of Process Engineering, Chinese Academy of Sciences (CAS), China

Y. Ding

University of Birmingham, UK
L-S. Fan
Ohio State University, USA

W. Ge

Institute of Process Engineering, Chinese Academy of Sciences (CAS), China

J.R. Grace

University of British Columbia, Canada

R.M. Harrison

University of Birmingham, UK

K. Higashitani

Kyoto University, Japan

J. Hristov

University of Chemical Technology and Metallurgy, Bulgaria

J.A.M. Kuipers

Eindhoven University of Technology, Netherlands

H. Leuenberger

Universität Basel, Switzerland

C. Li

East China University of Science and Technology, China

H. Li

Institute of Process Engineering, Chinese Academy of Sciences (CAS), China

S. Luding

University of Twente, Netherlands

G. S. LUO

The State Key Laboratory of Chemical Engineering, Tsinghua University, Beijing, China

W. Peukert

University of Erlangen-Nuremberg, Germany

L. Reh

ETH Zürich, Zumikon, Switzerland

M. J. Rood

University of Illinois, USA

J.P.K. Seville

University of Surrey, UK

S. Sundaresan

Princeton University, USA

W.W. Szymanski

University of Vienna, Austria

X. Tie

Chinese Academy of Sciences, China

M.L. Torem

Pontifical Catholic University of Rio de Janeiro, Brazil

F. Wei

Tsinghua University, China

J. Werther

Technische Universität Hamburg-Harburg (TUHH), Germany

C.Y. Wu

University of Surrey, UK

A. Yu

Monash University (Clayton Campus) Australia

R. Zhang

Institute of Atmospheric Physics, Chinese Academy of Sciences (CAS), China

Z. Zhang

University of Birmingham, UK

J. Zhu

Particle Technology Research Centre, University of Western Ontario, London, Ontario, Canada

Q. Zhu

Institute of Process Engineering, Chinese Academy of Sciences (CAS), China


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