克努森液质谱法:获得有用热力学信息和研究有趣汽化化学的技术

T. S. L. Narasimhan, R. Viswanathan
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引用次数: 2

摘要

Knudsen液质谱法(KEMS)是研究无机体系在高温下蒸发热力学的一种非常有效的技术。虽然主要考察的是气相,但也可以根据相规则对结果进行仔细的测量和分析,从而获得有关凝聚相的信息。在本文中,我们展示了KEMS产生具有实际重要性和根本利益的信息的能力-主要是通过在我们实验室进行了二十多年的对某些碲系统的汽化研究中的例子。对M-Te (M = Fe, Cr, Ni, Mo, Mn,不锈钢的主要成分)和Mn-Te- o体系的KEMS研究提供了在什么条件下裂变产物Te会导致316不锈钢包层材料在快中子增殖反应堆中发生化学侵蚀的相关信息。Mn-Te和Mn-Te- o体系的研究也揭示了凝聚相变对汽化行为的影响。详细讨论了这类研究的结果,以便今后更经常地进行这类keems研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Knudsen Effusion Mass Spectrometry: Technique for Obtaining Useful Thermodynamic Information and for Studying Interesting Vaporization Chemistry
Knudsen effusion mass spectrometry (KEMS) is a very powerful technique for studying the vaporization thermodynamics of inorganic systems at high temperatures. Although primarily one examines the vapor phase, information about condensed phases are also obtained through careful measurements and analysis of the results in accordance with the phase rule. In this paper, we have shown the capability of KEMS to yield information of practical importance and fundamental interest - essentially by drawing examples from the vaporization studies on some systems of tellurium, conducted in our laboratory for over two decades. The KEMS studies on M-Te (M = Fe, Cr, Ni, Mo, and Mn, the major components of stainless steel) and Mn-Te-O systems provided the pertinent information as to under what conditions the fission product Te can cause the chemical attack of 316 stainless steel cladding material used in fast breeder nuclear reactors. The study of Mn-Te and Mn-Te-O systems also reveal the effects of condensed phase transitions on the vaporization behavior. Results of such studies are discussed in detail so that KEMS studies of this type will be undertaken more often in the future.
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