Wu W, Jander J H, Rausch M H, Fröba A P, Giraudet C
Institute of Advanced Optical Technologies-Thermophysical Properties (AOT-TP), Department of Chemical and Biological Engineering (CBI) and Erlangen Graduate School in Advanced Optical Technologies (SAOT), Friedrich-Alexander-University Erlangen-Nürnberg (FAU), Paul-Gordan-Straße 8, 91052 Erlangen, Germany.
J Chem Phys. 2020 Oct 14;153(14):144201. doi: 10.1063/5.0024503.
The present work demonstrates that by the analysis of the dynamics of non-equilibrium fluctuations using the shadowgraph method, the thermal diffusivity, the Fick diffusion coefficient, the kinematic viscosity, and the Soret coefficient of a binary mixture can be determined from a single thermodiffusion experiment. The study was performed for a mixture consisting of equal masses of 1,2,3,4-tetrahydronaphthalene and n-dodecane in a newly developed shadowgraph apparatus at temperatures up to 373 K and pressures up to 40 MPa. The obtained results are mainly discussed in the light of their uncertainties at varying thermodynamic states for evaluating the benefits, drawbacks, and potentials of the apparatus. The Fick diffusion coefficient and the thermal diffusivity obtained with average expanded uncertainties of 2.8% and 6.6% agree with literature data and measurements for the same mixture taken by heterodyne dynamic light scattering. Current limitations of the method are reflected by the distinctly larger uncertainties of the kinematic viscosity and the Soret coefficient. Corresponding reasons and potential measures to overcome the limitations are discussed.
目前的工作表明,通过使用阴影图法分析非平衡涨落的动力学,二元混合物的热扩散率、菲克扩散系数、运动粘度和索雷特系数可以从单个热扩散实验中确定。该研究是在新开发的阴影图装置中,对由等质量的1,2,3,4-四氢萘和正十二烷组成的混合物进行的,温度高达373K,压力高达40MPa。根据在不同热力学状态下的不确定性,主要讨论了所得结果,以评估该装置的优点、缺点和潜力。通过平均扩展不确定度为2.8%和6.6%获得的菲克扩散系数和热扩散率与文献数据以及通过外差动态光散射对相同混合物进行的测量结果一致。运动粘度和索雷特系数明显更大的不确定性反映了该方法目前的局限性。讨论了相应的原因和克服这些局限性的潜在措施。