Speed of sound for three binary (CH4 + H2) mixtures from p = (0.5 up to 20) MPa at T = (273.16 to 375) K

被引:10
|
作者
Lozano-Martin, Daniel [1 ]
Carmen Martin, M. [1 ]
Chamorro, Cesar R. [1 ]
Tuma, Dirk [2 ]
Juan Segovia, Jose [1 ]
机构
[1] Univ Valladolid, Res Inst Bioecon, Escuela Ingn Ind, TERMOCAL Res Grp,BioEcoUVa, Paseo Cauce 59, E-47011 Valladolid, Spain
[2] BAM Bundesanstalt Mat Forsch & Prufung, D-12200 Berlin, Germany
关键词
Speed of sound; Acoustic resonator; Methane; Hydrogen; Heat capacities as perfect gas; Virial coefficients; ACCURATE EXPERIMENTAL P; EQUATION-OF-STATE; NATURAL-GAS; THERMODYNAMIC PROPERTIES; SPHERICAL RESONATORS; HYDROGEN-METHANE; MELTING LINE; T DATA; PRESSURES; MIXTURES;
D O I
10.1016/j.ijhydene.2019.12.012
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Speed of sound is one of the thermodynamic properties that can be measured with least uncertainty and is of great interest in developing equations of state. Moreover, accurate models are needed by the H-2 industry to design the transport and storage stages of hydrogen blends in the natural gas network. This research aims to provide accurate data for (CH4 + H-2) mixtures of nominal (5, 10, and 50) mol-% of hydrogen, in the p = (0.5 up to 20) MPa pressure range and with temperatures T = (273.16, 300, 325, 350, and 375) K. Using an acoustic spherical resonator, speed of sound was determined with an overall relative expanded (k = 2) uncertainty of 220 parts in 10(6) (0.022%). Data were compared to reference equations of state for natural gas-like mixtures, such as AGA8-DC92 and GERG-2008. Average absolute deviations below 0.095% and percentage deviations between 0.029% and up to 0.30%, respectively, were obtained. Additionally, results were fitted to the acoustic virial equation of state and adiabatic coefficients, molar isochoric heat capacities and molar isobaric heat capacities as perfect-gas, together with second and third acoustic virial coefficients were estimated. Density second virial coefficients were also obtained. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:4765 / 4783
页数:19
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