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作 者:Maksim Mezhericher Christian Rieck Nikolay Razorenov Evangelos Tsotsas
机构地区:[1]Mechanical and Aerospace Engineering,Princeton University,Princeton,NJ 08544,USA [2]Thermal Process Engineering,Otto-von-Guericke University,39106 Magdeburg,Germany [3]Mechanical Engineering,Shamoon College of Engineering,Beer Sheva,84100,Israel
出 处:《Particuology》2020年第6期23-29,共7页颗粒学报(英文版)
摘 要:In this work,we demonstrate that particles can be coated in a fluidized bed w让h coating solution provided by a novel aerosol generator.Aerosol droplets are smaller than 1 pim in volume-based diameter,hence they are very much smaller than droplets in conventional spray fluidized bed processes(around 40μm).A proof-of-principle experiment with 30%aqueous coating solution of sodium benzoate and γ-Al2O3 core particles in 150 mm fluidized bed fed with droplet aerosol supplied from the chamber side is presented.To simultaneously coat and dry the particles,inlet of fluidization air was at 50℃ .Moreover,Monte Carlo simulations of coating with small aerosol and large spray droplets were conducted.Due to dramatically smaller building blocks,ultrathin particle coating of high-resolution(very small layer thickness)can be attained with the new aerosol process,with the potential of even going nanoscale.Full coverage of particles is reached substantially faster than in the conv entional process,so that material dema nd is much lower and sensitive materials can be processed in short reside nee time.Solids yield of around 30%was much higher than expected,that is considered to be technically viable and may be enhanced by the recycling of entrained solids or better equipment design.
关 键 词:AEROSOL Fluidized bed Particle Submicron droplet Ultrathin coating
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