非极性材料的环境安全微波加热

August 1985 Pub Date : 2022-08-01 DOI:10.48103/jjeci572022
V. Saranchin
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引用次数: 0

摘要

目前的研究为六氟化铀从容器中安全蒸发的微波加热传热理论基础和实验研究提供了成果,包括缺陷加热和油馏分的中低温加热。该工艺对环境是安全的,因为热量产生在大部分被加热介质中,并且易于控制。所提出的方法是基于六氟化铀的蒸发,以牺牲吸收微波能量的物质传递的热能为代价。在实验台上,采用最低模态H10行波微波场对样品进行直接加热,在研究过程中,对样品进行单独加热和与UF6联合加热。结果表明,铀氧化物是微波加热过程中最理想的吸热剂。设计了一个中试规模的示范,以测试这一过程的可行性。研究了两组分混合的介电特性。确定了微波在混合物中的渗透深度和工艺实施中吸热剂的用量。在不同的连续模式下,对环境安全技术进行了中试试验。中试装置的结果表明,微波从钢容器中抽出DUF6的方法可以在几乎低温(T<1000C)的壁下安全排出,在保持容器压力水平的同时,利用微波能的效率(η≈97%)很高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmentally Safe Microwave Heating of Non-Polar Materials
The current research presents results for the theoretical basis of heat transfer and experimental studies of a microwave method of heating uranium hexafluoride for safe evaporation from containers, including defective, and low- and medium-temperature heating of oil fractions. The process is environmentally safe because heat generation occurs in the bulk of the heated medium and is easily controlled. The proposed method is based on uranium hexafluoride evaporation at the expense of heat energy transferred from substances absorbing microwave energy. The conducted investigation on a laboratory bench with a direct heating regime of samples by microwave field of a travelling wave of lowest mode H10 and in the process studied, samples were heated both individually and in combination with UF6. The results show that it was determined that uranium oxides are the most preferable for use as heat absorbing agents for the microwave heating process. A demonstration on a pilot scale was designed for testing the feasibility of this process. The dielectric characteristics of two components mixing were studied. The penetration depth of microwave into the mixture and heat-absorbing agent amount for process implementation has been determined. Several experimental tests on the environmentally safe technology at pilot scale installation were conducted at various continuous modes. The results revealed from the pilot unit showed that the microwave method of evacuation of DUF6 from steel containers allows them to be emptied safely with practically cold (T<1000C) walls, with high efficiency of using microwave energy (η≈97%) while maintaining the level of pressure in the containers.
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