首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Preparation and characterization of spray-dried submicron particles for pharmaceutical application
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Preparation and characterization of spray-dried submicron particles for pharmaceutical application

机译:喷雾干燥亚微米粒子制备及表征药物应用

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摘要

The versatile use of submicron-sized particles (0.1–1?μm) requires new manufacturing methods. One possibility for the preparation of submicron-sized particles is spray drying. However, the generation of small droplets at a high production rate and the precipitation of submicron particles are quite challenging. In order to produce a sufficient amount of fine and uniform droplets, a two-fluid nozzle with internal mixing was combined with a cyclone droplet separator. The precipitation of particles was realized with an electrostatic precipitator. Considering the difficulty of electrostatic precipitation concerning explosion risks and to make it capable using organic solvents, the spray dryer was integrated in a pressure resistant vessel. Based on previous experiments, the now presented design is compact and the electrostatic precipitator is shortened. In addition, enhanced drying conditions ensured a controlled and reproducible preparation of submicron-sized particles. Thus, high separation efficiencies were shown. Spray-drying experiments were conducted with the model substance mannitol. With the cyclone droplet separator, a fine and uniform spray with a droplet size smaller 2?μm was produced. This robust atomizing technique is capable for high concentrations. For a 10?wt% mannitol solution, particles in the submicron ranged50,3?=?0.7?μm were produced.
机译:多功能使用亚微米尺寸的颗粒(0.1-1≤μm)需要新的制造方法。制备亚微米尺寸粒子的一种可能性是喷雾干燥。然而,以高生产率和亚微米粒子的沉淀产生小液滴的产生非常具有挑战性。为了产生足够量的精细和均匀的液滴,将具有内部混合的双流体喷嘴与旋风液滴分离器合并。用静电除尘器实现颗粒的沉淀。考虑到静电降水有关于爆炸风险的难度并使其使用有机溶剂,喷雾干燥器集成在耐压容器中。基于先前的实验,现在所示的设计紧凑,静电除尘器缩短。此外,增强的干燥条件确保了亚微米尺寸颗粒的受控和可重复的制剂。因此,显示了高分离效率。用模型物质甘露醇进行喷雾干燥实验。利用旋风液滴分离器,产生液滴尺寸的精细和均匀的喷雾液位较小2≤μm。这种稳健的雾化技术能够高浓度。对于10?重量%的甘露醇溶液,亚微米的颗粒范围范围为50,3?=Δ0.7?μm。

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