Journal of Particle Science and Technology

Journal of Particle Science and Technology

No. of Volumes 11
No. of Issues 28
No. of Articles 169
No. of Contributors 407
Article View 301,561
PDF Download 187,641
View Per Article 1784.38
No. of Indexing Databases 30
No. of Reviewers 497

Acceptance Rate

40%

Average First Action

4 weeks

The Journal of Particle Science and Technology (JPST) is an international, open-access, single-blind peer-reviewed, and interdisciplinary publication, which is published biannually (two times a year) by the Iranian Research Organization for Science and Technology (IROST). This journal covers all aspects at the forefront of original fundamental and applied research as well as review articles in the science, processing, characterization, simulation, modeling, technology, and application of particles and particulate systems in size scales from nanometers to millimeters, including particle synthesis and characterization, powder technology and applications, particle modification, size reduction and size enlargement, particle properties (biological, electrical, optical,…), particle crystallization, particle process control in chemicals, catalysts, nanopowders, and powdered metals, metal oxides, pharmaceuticals, foods, ceramics, minerals, polymers, pigments, fibers, aerosols, and colloids.


The Journal of Particle Science & Technology (JPST) publication authorization is certified by the Ministry of Culture and Islamic Guidance; No.93/1297; 15 April 2014. JPST Journal has been approved to be indexed in the Ministry of Science, Research and Technology (MSRT) as Scientific Publication; No. 3/18/240558; 1 February 2016.


Article Processing Charges (APCs)

There is no charge to submit, process, publish and access the research articles. The cost involved in the publication of articles in JPST is provided by the Iranian Research Organization for Science and Technology (IROST).


 

 This journal has been certified by the Ministry of Science, Research, and Technology.

 

 Follow us:
Google Scholar Page Linkedin Page

 

Keywords Cloud

  • nanoparticles
  • Adsorption
  • Taguchi method
  • Nanocomposite
  • mechanical properties
  • Nanofluid
  • Nanofluids
  • morphology
  • Photocatalyst
  • Response surface methodology
  • Barite ore
  • Surfactant
  • DFT
  • Wastewater
  • Methyl orange
  • Activation energy
  • Interpenetrating phases
  • Electrophoretic deposition
  • dye removal
  • Modeling
  • Pressure drop
  • Spherical Flame
  • Isotherm
  • Water treatment
  • Chemical structure
  • polypropylene
  • Electronic parameter
  • Synthesis
  • Barite
  • heat transfer coefficient
  • dispersion
  • Processing
  • Central Composite Design
  • Solvothermal
  • Solubility
  • Solvent-free
  • CFD simulation
  • Nanoclay
  • Censored Data
  • Relativistic correction
  • Drying rate
  • carbon nanotubes
  • Silver nanoparticles
  • Stagnation-point flow
  • Tautomer
  • Bound state
  • Tensile strength
  • Optimization
  • Photocatalytic degradation
  • Heat transfer
  • Esterification
  • Bitumen
  • diffusion
  • Artificial neural network
  • Viscosity
  • Polyamide 6
  • Cobalt oxide
  • Schrödinger equation
  • Zeolite
  • Gravity separation
  • Anti-cancer
  • Coal Dust
  • Copper
  • heterogeneous catalyst
  • Micronized drugs
  • Clinoptilolite
  • Brownian motion
  • Spray pyrolysis
  • MWCNT
  • Proton conductivity
  • Crystal structure
  • Ash removal
  • Effective moisture diffusivity
  • biosynthesis
  • CaTiO3 Nano-powders
  • sol-gel auto-combustion method
  • Flame Speed
  • Silo
  • Solventless modification
  • Froth flotation
  • Particle size
  • γ-Irradiation
  • Noble metal nanoparticles
  • Methylene Blue
  • Ultrasonic Vibration
  • Removal of cadmium
  • TiO2
  • Cu2S Nanoparticle
  • Nanoparticles engineering
  • Alumina nanoparticles
  • nanoparticle
  • High temperature
  • SnO2
  • band gap
  • Elwadi Elgedid
  • Floating catalyst
  • Calcium carbonate
  • excavating mud
  • Drying effective efficiency
  • Surfactant-modified dolomite
  • Mechanical milling
  • Hydrophobic modification
  • Vibro-Fluidized Bed Dryer
  • Temperature
  • 7055 Al Treatment
  • zinc oxide
  • Internal Concentration Polarization (ICP)
  • CCD
  • Zinc sulfate solution
  • multilayer core/shell
  • Nanocomposite Substrates
  • Pervaporation
  • breakage kernel
  • Reflux route
  • surface plasmon resonance
  • Keywords: Process optimization
  • Additives
  • Stretching plate
  • PSD
  • Nanodiamond
  • Collection efficiency
  • γ-Fe2O3@KSF
  • α,β-Unsaturated compounds
  • photocatalitic activity
  • FCC catalyst particles
  • electrostatic interaction
  • kinetic modeling
  • Radiation attenuation, Dispersion rheology, Mtallic compounds, Radiology, X-ray
  • Highly excited states
  • Decolorization
  • Oil-water separation
  • VOF
  • Magnetite
  • Exhaust emissions
  • photochemical smog
  • Dusty Flame
  • Hybrid artificial neural network
  • broiler chicken
  • demulsifier
  • Nanoprecipitation
  • free convection
  • droplet movement
  • Co3O4@SiO2
  • grinding aid
  • In situ micronization
  • Elastic Die Deformation
  • microwave method
  • Staphylococcus aureus
  • Antioxidant
  • Cyclone separator theories
  • coagulation theory
  • Zr(IV) complex
  • adsorption experiment
  • Nanomaterials
  • MgAl2O4 Spinel
  • Removal
  • Voltammetric determination
  • Kinetics
  • Porous cerium oxide powder
  • Ion exchange
  • water and wastewater treatment
  • Jamming
  • CdO
  • vehicular emission
  • Catalytic activity
  • LDPE films
  • colour properties
  • Conductive polymer
  • Nafion
  • Magnetic iron oxide
  • Wastewater treatment
  • Monochlorobenzene (MCB)
  • Cluster coagulation model
  • DME
  • Drug delivery systems
  • Cordierite
  • water-oil emulsion
  • Spouted bed dryer
  • Drying kinetics
  • RSM method
  • Strength
  • Ni/La-Al2O3 catalyst
  • ultrasonic
  • solvent extraction
  • PP/PET/SEBS
  • Schrö
  • Kinetic and thermodynamic
  • agitation speed
  • Fuel Cells
  • Adsorbent
  • light olefins
  • coalescence kernel
  • CP Titanium
  • P/M Lubricants
  • dopant
  • Barium alginate
  • Superhydrophobic
  • Hawthorn Drying
  • Energy modeling
  • oxidative quenching