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Formation of fine particles using supercritical fluid (SCF) process: Short review

机译:使用超临界流体(SCF)工艺形成细颗粒:简短评论

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This paper will discuss about the utilization of supercritical fluid (SCF) process to produce fine particles. Supercritical fluids (SCFs) process can be considered as an emerging “clean” technology for the production of small-size or fine particles (e.g. micron-size). Microsphere is a material in micron scale which has been widely used as adsorbent, catalyst support, and drug delivery system. For advanced application, those materials are formulated in the form of porous microspheres. There are several methods that can be used using SCFs. Those method are, Rapid Expansion of Supercritical Solution (RESS), Gas Anti-Solvent/Supercritical Anti-Solvent (GAS/ SAS), Aerosol Solvent Extraction System (ASES), dan Solution Enhanced Dispersion by Supercritical Fluids (SEDS) and Particle from Gas-Saturated Solutions/Suspensions (PGSS). Considering the morphology of material which will be used to prepare microsphere, each of methods above has specific advantages and disadvantages toward the material. Based on the literatures, the ASES method is more likely to produce porous microparticles (microspheres). In the ASES method, porous microsphere formation is the result of interactions between: degrees of supersaturation, nucleation velocity and crystal growth.
机译:本文将讨论利用超临界流体(SCF)工艺生产细颗粒的方法。超临界流体(SCF)工艺可以被视为生产小尺寸或细颗粒(例如微米级)的新兴“清洁”技术。微球是微米级的材料,已被广泛用作吸附剂,催化剂载体和药物输送系统。对于高级应用,这些材料被配制成多孔微球的形式。使用SCF可以使用几种方法。这些方法包括:超临界溶液(RESS)的快速膨胀,气体反溶剂/超临界反溶剂(GAS / SAS),气溶胶溶剂萃取系统(ASES),超临界流体(SEDS)和气体颗粒中的溶液增强分散-饱和溶液/悬浮液(PGSS)。考虑到将用于制备微球的材料的形态,上述每种方法对材料都有特定的优点和缺点。根据文献,ASES方法更可能产生多孔微粒(微球)。在ASES方法中,多孔微球的形成是过饱和度,成核速度和晶体生长之间相互作用的结果。

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