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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >A gas phase method for the generation of aqueous submicron suspensions of poorly water soluble organic substances
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A gas phase method for the generation of aqueous submicron suspensions of poorly water soluble organic substances

机译:气相法产生水溶性差的有机物质的亚微米水悬浮液

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摘要

This work presents a novel process for the production of vapor-borne submicron organic particles and their transfer into an aqueous environment. A mixture of water and the organic substance is totally evaporated in a micro-structured evaporator. In a second step, the hot vapor mixture is rapidly cooled down inside a quench cooler so that the organic component gets into a supersaturated state and fine particles are formed due to homogenous nucleation. The rapid cooling is realized by the injection of liquid water into the hot vapor atmosphere. The liquid water evaporates and thereby cools down the vapor mixture. Water as one component of the vapor mixture remains in the vapor phase and acts as a carrier for the generated organic particles. The generation of the aqueous suspension is realized by the total condensation of the water vapor atmosphere directly after the quench cooler. The condenser is continuously supplied with surfactant solution. This prevents agglomeration as soon as the particles get transferred from the vapor into the liquid environment. The process has been realized successfully in a lab-scale plant. First results with Tocopheryl acetate and Myristyl myristate as model substances are presented in this work. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:这项工作提出了一种新的方法,用于生产蒸气传播的亚微米有机颗粒并将其转移到水性环境中。水和有机物的混合物在微结构蒸发器中完全蒸发。在第二步中,将热蒸汽混合物在淬火冷却器内迅速冷却,以使有机成分进入过饱和状态,并由于均相成核而形成细颗粒。快速冷却是通过将液态水注入热蒸气气氛来实现的。液态水蒸发,从而冷却蒸汽混合物。作为蒸气混合物的一种成分的水保留在蒸气相中,并充当生成的有机颗粒的载体。通过直接在急冷器之后的水蒸气气氛的完全冷凝来实现水悬浮液的产生。向冷凝器连续供应表面活性剂溶液。一旦颗粒从蒸气转移到液体环境中,这将防止团聚。该过程已在实验室规模的工厂中成功实现。这项工作介绍了以醋酸生育酚和肉豆蔻肉豆蔻酸酯为模型物质的初步结果。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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