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首页> 外文期刊>Particulate Science and Technology: An International Journal >Electrostatic effects on dispersion, transport, and deposition of fine pharmaceutical powders: development of an experimental method for quantitative analysis
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Electrostatic effects on dispersion, transport, and deposition of fine pharmaceutical powders: development of an experimental method for quantitative analysis

机译:静电对精细药物粉剂的分散,运输和沉积的影响:定量分析实验方法的发展

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摘要

Currently, there is no standard method for testing the electrostatic properties of pharmaceutical powders. The objective of this study was to develop a method of characterizing the dispersion, charging, and transport properties of fine powder flowing through tubes of different materials. Powders of known composition and size distribution were dispersed pneumatically and transported through a short section of tubing containing spiral baffle inserts of the same material to simulate powder flow in long sections of horizontal and vertical tubes with bends. The test powder was dispersed using ring jet suction and passed through the baffled tube to a sampling chamber, from which the powder cloud was sampled for particle size and electrostatic charge distribution measurement using an Electrical Single Particle Aerodynamic Relaxation Time (E-SP ART) analyzer. Experimental data on the tribocharging and transport properties of different powders are presented along with an explanation of the charging mechanisms. Analyses of particle size and electrostatic charge distributions in real time and on a single particle basis using the E-SP ART analyzer coupled with surface structure analyses with XPS and UPS showed that: (1) most powders are charged bipolarly with relatively high charge-to-mass ratio (Q/M) values that would have a strong effect on transport and deposition of powders; and (2) surface structures, particularly adsorbates,influence the work function and tribocharging of powder. Different methods, including plasma treatment, with minimal changes or contamination of the bulk properties of the powders are also suggested.
机译:当前,没有测试药物粉末的静电特性的标准方法。这项研究的目的是开发一种表征细粉流经不同材料管的分散,带电和传输特性的方法。将具有已知成分和尺寸分布的粉末气动分散,并通过一小段包含相同材料的螺旋形挡板插入物的管道进行输送,以模拟粉末在水平和垂直弯管的长段中的流动。使用环形射流吸力将测试粉末分散,并通过带挡板的管到达采样室,然后从采样室中采样粉末云,以使用电单粒子空气动力学弛豫时间(E-SP ART)分析仪进行粒度和静电荷分布测量。给出了有关不同粉末的摩擦带电和传输特性的实验数据以及带电机理的解释。使用E-SP ART分析仪并结合XPS和UPS进行表面结构分析,实时,单颗粒实时分析粒度和静电荷分布,结果表明:(1)大多数粉末以相对较高的电荷双极性充电。 -质量比(Q / M)值,将对粉末的运输和沉积产生重大影响; (2)表面结构,特别是吸附物,影响粉末的功函数和摩擦带电。还提出了包括等离子处理在内的不同方法,这些方法具有最小的改变或对粉末的整体性质的污染。

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