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Preparation of primary reference material of argon in oxygen by the gravimetric method for application to thermometry

机译:重量法制备氩气氩初级参考材料的制备施加热量

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摘要

Three mixtures of argon in oxygen with ( 1000, 350, 120) mu mol mol(-1) amount fractions of argon were prepared by the gravimetric method for application to thermometry. The mixtures are to be used to study the effects of argon impurity in oxygen on the temperature of the triple point of oxygen. From an uncertainty assessment compliant with the international standards, the relative uncertainty of the amount fraction of argon in the two-step dilution method used in this work ranged from 0.040% to 0.072%. The uncertainty was dominated by the uncertainties in weighing the mass of argon in the pre-mixture and weighing the mass of the pre-mixture in the final mixture. The internal consistency of the amount fraction of argon given by the gravimetric method was verified to be within 0.025% by measurements via gas chromatography with a thermal conductivity detector. The resultant uncertainty in the amount fraction of argon corresponds to less than 5 mu K in the effect of argon impurity on the triple point of oxygen. Therefore, the mixtures have sufficient precision for the thermal study of the argon-in-oxygen mixtures.
机译:通过重量法制备氩气(1000,350,120)Mu Mol Mol(-1)摩尔摩尔摩尔摩尔(-1)摩尔摩尔摩尔(-1)量氩气的三种混合物。混合物用于研究氩气杂质在氧气温度下的氧气温度的影响。从符合国际标准的不确定性评估,本工作中使用的两步稀释方法中氩水量分数的相对不确定性范围为0.040%至0.072%。不确定性是由在预混物中称重氩气质量的不确定性,并在最终混合物中称量预混合物的质量。通过通过气相色谱法通过具有导热探测器的气相色谱验证通过重量测量法给出的氩气量分数的内部一致性。氩气量分数的所得不确定性对应于氩气杂质对氧气三点的效果的小于5μk。因此,混合物具有足够的精度来进行氩气混合物的热研究。

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