Wang Nannan, Zou Wenhui, Li Xinyue, Liang Yaqi, Wang Peng
Department of Environmental Engineering, Beijing Institute of Petrochemical Technology Beijing 102617 PR China
School of Environment, State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology Harbin 150090 PR China
RSC Adv. 2022 Jun 9;12(27):17158-17181. doi: 10.1039/d2ra00381c. eCollection 2022 Jun 7.
Microwaves (MWs) are widely known and used in human life and production activities based on their thermal effects. In contrast, their nonthermal effects are still under debate. Fortunately, the nonthermal effects of MWs have been investigated by an increasing number of researchers and have shown great potential in industrial production. In this review, typical studies that demonstrate the nonthermal effects of MWs in chemistry and materials science are introduced and discussed, and the applications of and the harms that are caused by these effects are summarized to facilitate the safe use of these MW effects. The mechanisms of the nonthermal effects of MWs that have been proposed by researchers with various backgrounds are presented. Because some researchers did not detect nonthermal effects of MWs, four typical relevant studies are identified and introduced. Various types of MW reactors (single-mode and multimode reactors and reactors without a MW cavity) are summarized and compared. Finally, possible directions for future research on the nonthermal effects of MWs are proposed.
微波(MWs)因其热效应在人类生活和生产活动中广为人知且被广泛应用。相比之下,它们的非热效应仍存在争议。幸运的是,越来越多的研究人员对微波的非热效应进行了研究,并且这些效应在工业生产中显示出了巨大潜力。在这篇综述中,介绍并讨论了证明微波在化学和材料科学中的非热效应的典型研究,并总结了这些效应的应用及所造成的危害,以促进这些微波效应的安全使用。文中还介绍了不同背景的研究人员所提出的微波非热效应机制。由于一些研究人员未检测到微波的非热效应,因此确定并介绍了四项典型的相关研究。总结并比较了各种类型的微波反应器(单模和多模反应器以及无微波腔的反应器)。最后,提出了未来微波非热效应研究可能的方向。