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The effect of Atomization Method on the Morphology of Spray Dried Particles

机译:雾化方法对喷雾干燥颗粒形态的影响

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Effect of various atomization methods as well as solution concentration on the morphology of MgSO_4 particles produced by spray drying of aqueous solutions of MgSO_4 is investigated. Four types of atomizers are tested: (1) A mesh vibrating nebulizer, which generates low velocity droplets of 0.2 m/s with a size range of 1μm to 7 μm. (2) A splash plate nozzle, which generates droplets with an average velocity of 21 m/s and a size range of 40 μm to 500 μm. (3) An air mist atomizer, which generates droplets with an average velocity of 22 m/s and a size range of 20 μm to 150 μm. (4) A pressure atomizer, which generates droplets with an average velocity of 20 m/s and a size range of 30 μm to 1000 μm. Several types of particle morphologies are identified in this research. For the vibrating mesh nebulizer most of the particles are non-disrupted thick wall shells. For the splash plate and the air mist atomizer most of the particles are deformed spherical shells due to contraction and some are uniformly or non-uniformly disrupted. Higher initial solute concentration thickens the shell wall and prevents the particles to burst. It is found to be hard to obtain fully filled particles even for nearly saturated solutions at room temperature.
机译:研究了各种雾化方法的影响以及通过喷雾干燥的MgSO_4水溶液产生的MgSO_4颗粒形态的影响。测试了四种类型的雾化器:(1)网格振动雾化器,其产生0.2米/秒的低速液滴,尺寸范围为1μm至7μm。 (2)飞溅板喷嘴,其产生平均速度为21 m / s的液滴,尺寸范围为40μm至500μm。 (3)气雾雾化器,其产生平均速度为22m / s的液滴,尺寸范围为20μm至150μm。 (4)压力雾化器,其产生平均速度为20m / s的液滴,尺寸范围为30μm至1000μm。在本研究中鉴定了几种类型的颗粒形态。对于振动网状雾化器,大部分颗粒是非中断的厚壁壳。对于飞溅板和气雾雾化器,大部分颗粒是由于收缩而变形的球形壳,并且有些均匀或非均匀地破坏。较高的初始溶质浓度使壳壁增厚并防止颗粒突发。即使在室温下为几乎饱和的溶液,也发现难以获得完全填充的颗粒。

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