首页> 外文期刊>Journal of pharmaceutical sciences. >Dielectric properties of pharmaceutical materials relevant to microwave processing: effects of field frequency, material density, and moisture content.
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Dielectric properties of pharmaceutical materials relevant to microwave processing: effects of field frequency, material density, and moisture content.

机译:与微波加工相关的药物材料的介电性能:现场频率,材料密度和水分含量的影响。

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摘要

The rising popularity of microwaves for drying, material processing and quality sensing has fuelled the need for knowledge concerning dielectric properties of common pharmaceutical materials. This article represents one of the few reports on the density and moisture content dependence of the dielectric properties of primary pharmaceutical materials and their relevance to microwave-assisted processing. Dielectric constants (epsilon') and losses (epsilon'') of 13 pharmaceutical materials were measured over a frequency range of 1 MHz-1 GHz at 23 +/- 1 degrees C using a parallel-electrode measurement system. Effects of field frequency, material density and moisture content on dielectric properties were studied. Material dielectric properties varied considerably with frequency. At microwave frequencies, linear relationships were established between cube-root functions of the dielectric parameters [symbols: see text] and density which enabled dielectric properties of materials at various densities to be estimated by regression. Moisture content was the main factor that contributed to the disparities in dielectric properties and heating capabilities of the materials in a laboratory microwave oven. The effectiveness of a single frequency density-independent dielectric function for moisture sensing applications was explored and found to be suitable within low ranges of moisture contents for a model material.
机译:用于干燥的微波,材料加工和质量传感的普及的普及推动了关于常用药物材料的介电性能的知识。本文代表了少数关于初级药物材料的密度和水分含量依赖性的少数报告之一及其与微波辅助加工的相关性。使用平行电极测量系统,在23 +/- 1摄氏度为23 +/- 1摄氏度的频率范围内测量13个药物材料的介电常数(ε')和损失(ε')。研究了场频,材料密度和水分含量对介电性质的影响。材料电介质特性随频率而变化显着。在微波频率下,在介电参数[符号:参见文本]和密度的立方​​根函数之间建立线性关系,该密度使得能够通过回归估计的各种密度的材料的介电性质。水分含量是导致实验室微波炉中材料的介电性质和加热能力的主要因素。探讨了用于湿度传感应用的单频密度独立介质功能的有效性,发现适用于模型材料的低水分含量。

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