3-5
2026
影响因子区间
80天
平台估算
71%
2025
中国作者发文占比
1800 EUR
收费
期刊简介: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.
【译文】‘颗粒学’一词是为了与粒子科学与技术的学科相平行而创造的。颗粒学是一本跨学科的期刊,它发表关于颗粒材料、工艺和系统的发现、形成和工程的前沿研究文章和批判性评论。它特别欢迎利用先进的理论、建模和测量方法来发现和创造新的颗粒材料,以及制造基于颗粒的功能性产品的贡献,如传感器。论文由主题编辑处理,他们负责特定学科领域的贡献。这些领域被分类为:颗粒合成与改性;颗粒表征与测量;颗粒系统与散状物料技术;流态化与颗粒-流体系统;气溶胶;以及颗粒技术应用。关于颗粒的创造和加工的关键主题包括:-在广泛的长度尺度上对颗粒形成、颗粒集体行为和颗粒生产系统的建模和模拟-Mining of experimental data for particle synthesis and surface properties to facilitate the creation of new materials and processes-颗粒设计制备,包括在形成、递送系统和生物系统中的可控响应和传感功能等-用于可视化和分析颗粒系统的实验和计算方法。这些主题与材料、制药和食品的生产广泛相关,以及将能源资源转化为燃料和保护环境。

| 指标 | 当前值 | 近三年趋势 |
|---|---|---|
| JCR分区 | Q2 | 暂无 |
| 中科院分区 | 2区 | 暂无 |
| 影响因子区间 | 3-5 | 暂无 |