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Methodological Study on Measurement of Hydrogen Abundance in Hydrogen Isotopes System by Low Resolution Mass Spectrometry

机译:低分辨质谱法测量氢同位素系统中氢丰度的方法学研究

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China`s rapid economic growth has resulted in significant environmental side effects. Therefore, China has been interested in reducing her dependence on foreign oil and gas by developing technologies needed for hydrogen, in addition to her increasing energy mix of nuclear and renewable energy form, such as solar and wind power. There are three isotopes of hydrogen, i.e. protium (P or H), deuterium (D), and tritium (T). Both deuterium and tritium are important materials in nuclear fuel cycle industry. Tritium is one of the critical radioactive nuclides. Planning for and implementing contamination control as a part of normal operation and maintenance activities is an important function in any hydrogen facility, especially tritium facility. The development of hydrogen isotopes analysis is the key issues in this area. Mass spectrometry (MS) with medium (about 600) and high resolution (> 1,400) is commercially available; however, the routine analysis of hydrogen isotopes is done with low-resolution MS (< 200) in China. This paper summarizes the progress of MS measurement technology for hydrogen isotope abundance in China, focusing on our lab`s research program and technical status. An analyzing method has been introduced for accurate measurement of tritium abundance in the H.D.T system by low resolution MAT-253 MS. The quotient of compression ratio coefficient is determined by building up equipment for laboratory-scale preparation of secondary standard gases and by considering the difference in sensitivity between hydrogen isotopes. The results show that the measured value is reproducible within the relative error range of 0.8% for gas samples of different tritium abundance.
机译:中国的快速经济增长已导致严重的环境副作用。因此,除了增加太阳能和风能等核能和可再生能源形式的能源结构外,中国还希望通过开发氢所需的技术来减少对外国石油和天然气的依赖。氢存在三种同位素,即pro(P或H),氘(D)和tri(T)。氘和tri都是核燃料循环工业中的重要材料。 t是关键的放射性核素之一。在任何氢工厂,特别是tri工厂中,规划和实施污染控制作为正常操作和维护活动的一部分是一项重要功能。氢同位素分析的发展是这一领域的关键问题。具有中等(约600)和高分辨率(> 1,400)的质谱(MS)可商购;但是,在中国,氢同位素的常规分析是使用低分辨率质谱(<200)进行的。本文重点研究了实验室中氢同位素丰度的质谱测量技术的进展,重点是实验室的研究计划和技术现状。引入了一种通过低分辨率MAT-253 MS精确测量H.D.T系统中tri含量的分析方法。压缩比系数的商是通过建立用于实验室规模制备次要标准气体的设备并考虑氢同位素之间的灵敏度差异来确定的。结果表明,对于tri含量不同的气体样品,测量值在相对误差范围0.8%内可重现。

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