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Krichevskii

Figure 12.9 For the fugacity of a supercritical solute(l) in a liquid solvent(2), the Poynting factor (PF) in FFF 5 (12.2.2) tends to compensate for the effects of the activity coefficient. This plot shows contributions to fugacities of hydrogen(l) in methanol(2) at 294.15 K. Points are the experimental data of Krichevskii et al. [3]. Horizontal line is for a Henry s law ideal solution. Upper line includes only the Poynting factor, while the lower line includes only the activity coefficient. Adapted from a figure in Campanella et al. [4]. Figure 12.9 For the fugacity of a supercritical solute(l) in a liquid solvent(2), the Poynting factor (PF) in FFF 5 (12.2.2) tends to compensate for the effects of the activity coefficient. This plot shows contributions to fugacities of hydrogen(l) in methanol(2) at 294.15 K. Points are the experimental data of Krichevskii et al. [3]. Horizontal line is for a Henry s law ideal solution. Upper line includes only the Poynting factor, while the lower line includes only the activity coefficient. Adapted from a figure in Campanella et al. [4].
R. Krichevskii, N. M. Zhavoronkov, and D. S. TsUdis, "Solubility of Hydrogen, Carbon Monoxide, and of Their Mixtures in Methanol Under Pressure," Zhur. Fiz.Khim.,9,317(1937). [Pg.579]

Krichevskii and co-workers have described several flow systems. A high-pressure single-pass flow system which can be operated at pressures up to 300 MPa has been described by Ipat ev and co-workers. ... [Pg.90]


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Krichevskii parameter

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