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Review on Microwave-Matter Interaction Fundamentals and Efficient Microwave-Associated Heating Strategies

机译:微波物质相互作用的基本原理和有效的微波相关加热策略研究

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Microwave heating is rapidly emerging as an effective and efficient tool in various technological and scientific fields. A comprehensive understanding of the fundamentals of microwave–matter interactions is the precondition for better utilization of microwave technology. However, microwave heating is usually only known as dielectric heating, and the contribution of the magnetic field component of microwaves is often ignored, which, in fact, contributes greatly to microwave heating of some aqueous electrolyte solutions, magnetic dielectric materials and certain conductive powder materials, etc. This paper focuses on this point and presents a careful review of microwave heating mechanisms in a comprehensive manner. Moreover, in addition to the acknowledged conventional microwave heating mechanisms, the special interaction mechanisms between microwave and metal-based materials are attracting increasing interest for a variety of metallurgical, plasma and discharge applications, and therefore are reviewed particularly regarding the aspects of the reflection, heating and discharge effects. Finally, several distinct strategies to improve microwave energy utilization efficiencies are proposed and discussed with the aim of tackling the energy-efficiency-related issues arising from the application of microwave heating. This work can present a strategic guideline for the developed understanding and utilization of the microwave heating technology.
机译:在各种技术和科学领域中,微波加热正迅速成为一种有效和高效的工具。全面了解微波与物质相互作用的基础是更好地利用微波技术的前提。但是,微波加热通常仅称为介电加热,而微波磁场分量的贡献通常被忽略,实际上,微波对某些水溶液,磁性介电材料和某些导电粉末材料的微波加热有很大贡献本文着眼于这一点,并以全面的方式仔细地回顾了微波加热机理。此外,除了公认的常规微波加热机制外,微波与金属基材料之间的特殊相互作用机制也越来越引起人们对各种冶金,等离子和放电应用的关注,因此,特别对反射方面进行了综述,加热和放电效果。最后,提出并讨论了几种提高微波能量利用效率的独特策略,目的是解决由于微波加热的应用而引起的与能量效率相关的问题。这项工作可以为进一步了解和利用微波加热技术提供战略指导。

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