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首页> 外文期刊>Indian Journal of Chemical Technology >Correction factor to determine total hydrogen+deuterium concentration obtained by inert gas fusion-thermal conductivity detection(IGF-TCD)technique
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Correction factor to determine total hydrogen+deuterium concentration obtained by inert gas fusion-thermal conductivity detection(IGF-TCD)technique

机译:通过惰性气体熔融-热导检测技术(IGF-TCD)确定总氢+氘浓度的校正系数

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摘要

The limitation of commercially available dedicated equipment based on Inert Gas Fusion-Thermal Conductivity Detection(IGF-TCD)for the determination of hydrogen+deuterium is described.For a given molar concentration,deuterium is underestimated vis a vis hydrogen because of lower thermal conductivity and not considering its molecular weight in calculations.An empirical correction factor based on the differences between the thermal conductivities of hydrogen,deuterium and the carrier gas argon,and the mole fraction of deuterium in the sample has been derived to correct the observed hydrogen+deuterium concentration.The corrected results obtained by IGF-TCD technique have been validated by determining hydrogen and deuterium contents in a few samples using an independent method based on hot vacuum ex-traction-quadrupole mass spectrometry(HVE-QMS).Knowledge of mole fraction of deuterium(X_D)is necessary to effect the correction.The correction becomes insignificant at low X_D values(X_D < 0.2)as the precision in the IGF measurements is comparable with the extent of correction.
机译:描述了基于惰性气体聚变热导率检测(IGF-TCD)的商用专用设备对氢和氘的测定的局限性。对于给定的摩尔浓度,由于相对于氢的较低的热导率,氘相对于氢被低估了根据氢,氘和载气氩的热导率之间的差异以及样品中氘的摩尔分数得出了经验校正因子,以校正观察到的氢+氘浓度通过使用基于热真空萃取-四极杆质谱(HVE-QMS)的独立方法测定一些样品中的氢和氘含量,已验证了IGF-TCD技术获得的校正结果。氘的摩尔分数的知识(X_D)是进行校正所必需的。在X_D值较低(X_D <0.2)时,校正变得不重要因为IGF测量的精确度与校正程度相当。

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