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作 者:周萌 毛岩鹏[1,2,3,4] 王文龙 宋占龙[1,2,3,4] 赵希强 高一博[1,2,3,4] Zhou Meng;Mao Yanpeng;Wang Wenlong;Song Zhanlong;Zhao Xiqiang;Gao Yibo(College of Energy and Power Engineering,Shandong University,Jinan 250100,China;National Engineering Laboratory for Reducing Emissions from Coal Combustion,Jinan 250100,China;Engineering Research Center of Environmental Thermal Technology of Ministry of Education,Jinan 250100,China;Shandong Key Laboratory of Energy Carbon Reduction and Resource Utilization,Jinan 250100,China)
机构地区:[1]山东大学能源与动力工程学院,济南250100 [2]燃煤污染物减排国家工程实验室,济南250100 [3]环境热工技术教育部工程研究中心,济南250100 [4]山东省能源碳减排技术与资源化利用重点实验室,济南250100
出 处:《电子测量与仪器学报》2022年第11期221-235,共15页Journal of Electronic Measurement and Instrumentation
基 金:山东省自然科学基金面上项目(ZR202111110134);海能未来技术集团股份有限公司横向课题项目资助。
摘 要:在微波加热过程中,由于温度的准确性会直接影响到化学反应速率与制备样品的性能,所以微波场中温度的准确测量具有十分重要的意义。综述了微波场中传统的温度测量方法包括热电偶测温、光纤测温和红外测温方式在微波场中应用时的局限性。鉴于传统测温手段的局限性,一种新型的温度测量方式-有机金属框架材料(MOFs)温度计因具有高度的可调性以及纳米级的MOFs颗粒能够实现微米级甚至亚微米级的温度测量而受到了广泛的关注,对近年来双发射MOFs温度计以及膜式温度计的研究成果进行了分析,并综述了优化MOFs温度计的方法,讨论了微波场测温技术未来的发展方向。In the process of microwave heating, the accuracy of temperature will directly affect the chemical reaction rate and the performance of the prepared samples, so the accurate measurement of temperature in the microwave field is of great significance. The traditional temperature measurement methods in microwave field are reviewed, including the limitations of thermocouple, optical fiber and infrared in the application of microwave field. In view of the limitations of traditional methods, a new type of temperature measurement method: metal-organic frameworks(MOFs) thermometry. It not only has a high degree of adjustability, but also nanoscale MOFs particles can achieve temperature measurement at the micron or submicron level, which has attracted extensive attention. Analyzing the research results of dual emission MOFs thermometry and membrane thermometry in recent years, and reviewing the methods of optimizing MOFs thermometers, the future development of microwave temperature measurement technology was discussed.
分 类 号:TK311[动力工程及工程热物理—热能工程]
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