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THE TEMPERATURE DEPENDENT ENTHALPY OF VAPORIZATION OF PURE SUBSTANCES

机译:纯物质汽化的温度相关焓

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Recently the universal behavior of the temperature dependent enthalpy of vaporization along with the whole liquid-vapor coexistence curve at equilibrium is described and explained by Roman et al.(5) The work (called RWVM relation) succeeds in the combination of the linear relation near the triple point and the renormalization group theory result near the critical point. For the convenience of chemical designs and engineering applications, we report its b values yielding the minimum average absolute deviation (AAD) for 74 pure substances from the NIST web-book and compare the results with other correlations. We find that with an adapted b value, the RWVM relation predicts the data of 47 pure substances with an AAD less than 0.0093, with six more than 0.02 and all less than 0.03 except quantum fluid hydrogen, that is clearly better than other correlations. For most pure substances, b covers the range from 0 to 1. Only one negative value stands for the quantum fluid helium because of its enthalpy of vaporization being experimentally not a monotonic function of the temperature in the range near the triple point.
机译:最近,Roman等人描述并解释了与温度有关的汽化焓的普遍行为以及整个液体-蒸汽共存曲线的平衡。(5)这项工作(称为RWVM关系)成功地实现了线性关系的组合。三点和重归一化群论的结果接近临界点。为了方便化学设计和工程应用,我们从NIST网页上报告了b值,得出74种纯净物质的最小平均绝对偏差(AAD),并将结果与​​其他相关性进行比较。我们发现,使用合适的b值,RWVM关系预测的AAD小于0.0093的47种纯净物质的数据,六种大于0.02且除量子流体氢以外的所有其他均小于0.03的数据,显然比其他相关性好。对于大多数纯净物质,b覆盖从0到1的范围。量子流体氦只有一个负值,因为它的汽化焓在实验上不是三点附近温度的单调函数。

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