建立了熔盐堆中作为冷却剂的熔氟盐紫外可见吸收光谱的高温测量仪器

Hongtao Liu, Yiyang Liu, Tao Su
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引用次数: 4

摘要

熔盐由于具有优良的传热和储热性能,在核能和太阳能领域得到了广泛的应用。在美国橡树岭国家实验室(ORNL)开发的熔盐堆实验(MSRE)中,选择熔融氟化物盐作为一次和二次冷却剂。因此,研究熔盐的物理和化学性质对堆芯设计和热工性能的影响具有重要意义。分子结构直接决定了物质的物理和化学性质,因此研究熔盐的结构也很有必要。光谱学已被证明是研究熔盐结构的一种非常有用的工具。但是,该标准仪器不适用于高温熔盐的测量,特别是对熔氟盐的测量。为了获得熔盐在高温下的紫外-可见(UV-Vis)吸收光谱,设计了一种原位研究熔盐结构的仪器。该仪器主要由一个垂直坑炉连接一个手套箱和一个组装的试管组成,可在室温至800℃范围内工作。组装后的比色管以哈氏合金C/N为主体,采用反“T”型轮廓,以金刚石或结晶CaF2等为窗板,可以承受样品产生的腐蚀,并允许感兴趣的光通过。该仪器的有效光谱范围为200 ~ 1000 nm。通过对常温水和高温熔盐的光谱研究,验证了仪器的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Instrument Established for the High Temperature Measurement of Ultraviolet-Visible Absorption Spectra of Molten Fluoride Salt Behaving As Coolant in the Molten Salt Reactor
Molten salts were widely used in nuclear and solar power field due to the excellent heat transfer and storage. Molten fluoride salts were selected as primary and secondary coolants in the Molten Salt Reactor Experiment (MSRE) developed by Oak Ridge National Laboratory (ORNL). Therefore, it is dramatically important to study the physical and chemical properties of molten fluoride salts that impact on the design of reactor core and thermohydraulics. The molecular structure directly determines the physical and chemical properties of matter, so it is also essential to study the structure of molten salts. Spectroscopy has been proven to be a very useful tool for investigating molten salts structures. However, the standard instrument is inapplicable for measurement of the high temperature molten salts, especially for molten fluoride salts. To obtain the ultraviolet-visible (UV-Vis) absorption spectra of molten salts at high temperature, an instrument was designed to study the structures of molten salts in situ. The instrument is mainly composed of a vertical pit furnace connecting with a glovebox and an assembled cuvette which can operate from room temperature up to 800°C. The assembled cuvette is made of Hastelloy C/N as the main body with a reverse ‘T’ contour and diamond or crystalline CaF2 etc. as the window plates, so it can withstand the corrosion produced by the sample and allow the interest light passing through. The effective spectral range of this instrument is from 200 to 1000 nm. Performances of the instrument are testified by spectral studies on water under room temperature and molten salts under high temperature.
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