首页> 外文会议>2017 International Conference on Electrical and Computing Technologies and Applications >Electromagnetic processing of low-loss materials. Microwave spectroscopy of supercooled water confined in W/O microemulsions
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Electromagnetic processing of low-loss materials. Microwave spectroscopy of supercooled water confined in W/O microemulsions

机译:电磁处理低损耗材料。 W / O微乳液中的过冷水的微波光谱

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The behavior of water-in-oil micro-emulsions is investigated using the Dielectric Spectroscopy approach. The deconvolution of the dielectric relaxation spectra allows the identification of the trapped water, and therefore the evolution of the Dielectric Permittivity with the temperature in the freezing range can be substantiated. In all the water-in-oil systems investigated, the water trapped within the core of the microemulsion does not freeze even at temperatures of about -28 °C. The dielectric response associated to the dispersed water fraction, exhibits a relaxation behavior quite identical to that of water in the supercooled state. The dielectric contribution in the mid-microwave range has a relaxation frequency of about 6.4 GHz at -20°C, comparable to the extrapolated value for water at the same temperature, which is about 6.0 GHz. This indicates that the dispersed droplets in the oil continuous phase contain water that remains liquid even at -20°C. The supercooled water droplets dispersed in oil is used advantageously as microwave energy absorbers to affect positively the efficiency of the microwave processing at freezing temperatures or of materials having a very low microwave absorption.
机译:使用介电谱方法研究了油包水型微乳液的行为。介电弛豫谱的解卷积可以识别出所捕获的水,因此可以证实介电常数随冻结范围内温度的变化。在所有研究的油包水系统中,即使在约-28°C的温度下,微乳液核心中截留的水也不会冻结。与分散的水部分相关的介电响应表现出的松弛行为与过冷状态的水完全相同。在中波范围内,介电贡献在-20°C时具有约6.4 GHz的弛豫频率,与在相同温度下水的外推值(约6.0 GHz)相当。这表明在油连续相中分散的液滴包含即使在-20°C仍保持液态的水。分散在油中的过冷水滴有利地用作微波能量吸收剂,以积极影响冷冻温度下微波处理的效率或微波吸收率非常低的材料的效率。

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