首页> 外文期刊>The Journal of Chemical Thermodynamics >Speed-of-sound measurements in (argon plus carbon dioxide) over the temperature range from (275 to 500) K at pressures up to 8 MPa
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Speed-of-sound measurements in (argon plus carbon dioxide) over the temperature range from (275 to 500) K at pressures up to 8 MPa

机译:在(275至500)K的温度范围内,压力高达8 MPa的情况下(氩气和二氧化碳)的声速测量

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The speed of sound of two (argon + carbon dioxide) mixtures was measured over the temperature range from (275 to 500) K with pressures up to 8 MPa utilizing a spherical acoustic resonator. The compositions of the gravimetrically prepared mixtures were (0.50104 and 0.74981) mole fraction carbon dioxide. The vibrational relaxation of pure carbon dioxide led to high sound absorption, which significantly impeded the sound-speed measurements on carbon dioxide and its mixtures; pre-condensation may have also affected the results for some measurements near the dew line. Thus, in contrast to the standard operating procedure for speed-of-sound measurements with a spherical resonator, non-radial resonances at lower frequencies were taken into account. Still, the data show a comparatively large scatter, and the usual repeatability of this general type of instrument could not be realized with the present measurements. Nonetheless, the average relative combined expanded uncertainty (k = 2) in speed of sound ranged from (0.042 to 0.056)% for both mixtures, with individual state-point uncertainties increasing to 0.1%. These uncertainties are adequate for our intended purpose of evaluating thermodynamic models. The results are compared to a Helmholtz energy equation of state for carbon capture and storage applications; relative deviations of (-0.64 to 0.08)% for the (0.49896 argon + 0.50104 carbon dioxide) mixture, and of (-1.52 to 0.77)% for the (0.25019 argon + 0.74981 carbon dioxide) mixture were observed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:利用球形声谐振器在压力高达8 MPa的情况下(275至500)K的温度范围内,测量了两种(氩气+二氧化碳)混合物的声速。重量制备的混合物的组成为(0.50104和0.74981)摩尔分数的二氧化碳。纯二氧化碳的振动弛豫导致高吸声,这严重阻碍了二氧化碳及其混合物的声速测量。预冷凝可能还会影响露水线附近某些测量的结果。因此,与使用球形谐振器进行声速测量的标准操作程序相反,考虑了低频下的非径向谐振。尽管如此,数据仍显示出较大的分散性,并且使用当前的测量无法实现这种常规类型仪器的通常可重复性。尽管如此,两种混合物的平均相对声速组合扩展不确定度(k = 2)在(0.042至0.056)%范围内,而各个状态点的不确定度增加到0.1%。这些不确定性足以满足我们评估热力学模型的预期目的。将结果与用于碳捕获和存储应用的亥姆霍兹能量状态方程进行比较;对于(0.49896氩气+ 0.50104二氧化碳)混合物,观察到(-0.64至0.08)%的相对偏差,对于(0.25019氩气+ 0.74981二氧化碳)混合物观察到(-1.52至0.77)%的相对偏差。 (C)2016 Elsevier Ltd.保留所有权利。

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