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Optical Diagnostics of Supercritical CO

机译:超临界有限公司的光学诊断

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摘要

The supercritical CO2 (scCO2) is widely used as solvent and transport media in different technologies. The technological aspects of scCO2 fluid applications strongly depend on spatial–temporal fluctuations of its thermodynamic parameters. The region of these parameters’ maximal fluctuations on the p-T (pressure-temperature) diagram is called Widom delta. It has significant practical and fundamental interest. We offer an approach that combines optical measurements and molecular dynamics simulation in a wide range of pressures and temperatures. We studied the microstructure of supercritical CO2 fluid and its binary mixture with ethanol in a wide range of temperatures and pressures using molecular dynamics (MD) simulation. MD is used to retrieve a set of optical characteristics such as Raman spectra, refractive indexes and molecular refraction and was verified by appropriate experimental measurements. We demonstrated that in the Widom delta the monotonic dependence of the optical properties on the CO2 density is violated. It is caused by the rapid increase of density fluctuations and medium-sized (20–30 molecules) cluster formation. We identified the correlation between cluster parameters and optical properties of the media; in particular, it is established that the clusters in the Widom delta acts as a seed for clustering in molecular jets. MD demonstrates that the cluster formation is stronger in the supercritical CO2-ethanol mixture, where the extended binary clusters are formed; that is, the nonlinear refractive index significantly increased. The influence of the supercritical state in the cell on the formation of supersonic cluster jets is studied using the Mie scattering technique.
机译:超临界CO 2(SCCO2)广泛用作不同技术中的溶剂和运输介质。 SCCO2流体应用的技术方面强烈地取决于其热力学参数的空间延波。这些参数的区域对P-T(压力温度)图的最大波动被称为Widom Delta。它具有显着的实用和根本的利益。我们提供一种方法,将光学测量和分子动力学模拟结合在各种压力和温度中。我们在使用分子动力学(MD)模拟的各种温度和压力范围内与乙醇一起研究了超临界CO2流体的微观结构及其二元混合物。 MD用于检索一组光学特性,例如拉曼光谱,折射率和分子折射,并通过适当的实验测量验证。我们证明,在WIDOM DELTA中,侵犯了光学性质对CO2密度的单调依赖性。它是由密度波动和中等大小(20-30分子)簇形成的快速增加引起的。我们确定了媒体集群参数与光学属性之间的相关性;特别地,建立了WIDOM DELTA中的簇用作分子喷射中的聚类种子。 MD表明,在超临界CO 2-乙醇混合物中簇形成较强,其中形成延伸的二进制簇;也就是说,非线性折射率显着增加。研究了使用MIE散射技术研究了在电池中对细胞形成的影响。

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