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Kataoka correlation

Also, the Kataoka correlation has been used in adsorption systems from liquid phase with... [Pg.163]

Kataoka,T. Onset of non-newtonian flow a correlation with an average molecular weight. Polymer Letters 5,1063-1068 (1967). [Pg.177]

Hossmann KA (1999) The hypoxic brain. Insights from ischemia research. Adv Exp Med Biol 474 155-169 Karnath HO, Himmelbach M, Rorden C (2002) The subcortical anatomy of human spatial neglect putamen, caudate nucleus and pulvinar. Brain 125 350-360 Kataoka S, Hori A, Shirakawa T et al (1997) Paramedian pontine infarction. Neurological/topographical correlation. Stroke 28 809-815... [Pg.16]

Teramoto et al. [15] and Bunge and Noble [16] incorporated reaction reversibility in describing the transport process in the emulsion globule. Teramoto et al. [15,17,18] also developed models that accounted for diffusion in the emulsion drops and the drop-size distribution of the W/O emulsion. Kataoka and coworkers [19,20] developed the work of Teramoto et al. [15,17,18] by proposing a model with parameters that could be determined independently or through correlations in the literature. [Pg.711]

Teramoto et al. [21] verified that the correlation used in the model of Bunge and Noble [16] was the most accurate of the correlations without adjustment parameters, because of the introduction of the apparent increase of the internal phase diffusivity caused by the diffusion of the reaction product between the solute and the internal stripping reagent (Baird et al. [22]). This effect was not included in the models proposed by Teramoto et al. [17] and Kataoka et al. [20]. Lin and Long [23] tried to... [Pg.711]

Recent work on the mass transfer kinetics in monolithic columns [74] has suggested that the Kataoka and the Penetration correlations give similar results. These results are better than those given by the Wilson-Geankoplis correlation. [Pg.250]

A plot of H/(2mq) versus 1/Ug is a straight line with a slope equal to Di and an ordinate equal to 3f + S )/Sq. The coefficient of external mass transfer is estimated using one of the several correlations available for it (see Chapter 5, subsection 5.2.5, correlation of Wilson and Geankoplis [62], Kataoka et al. [87], or the penetration theory [88]). Correcting for the contribution due to the external mass transfer resistance gives the last term in the plate height equation, 5, hence the intraparticle diffusion coefficient, Dg. [Pg.328]

Although the models are capable of predicting the diameter of the internal droplets reasonably well, they underpredict the drop diameter of the liquid membrane emulsion drops in batch stirred vessels. Kataoka and Nishiki [90] proposed the following correlation for size of W/O/W macrodrops based on analysis of their experimental data. [Pg.176]

Kitano, T., Nishimura, T., Kataoka, T. and Sakai, T. (1980) Correlation of dynamic and steady flow viscosities of filled polymer systems, Rheol Acta, 19,671-3. [Pg.223]

I. Kataoka and M. Ishii, Mechanism and Correlation of Droplet Entrainment and Deposition in Annular Two-phase Row, NUREG/CR-2885, ANL-82-44, (1982). [Pg.165]

The flash tank and pressure reducing valves are necessary initially during constant pressure startup of the Super LWR. The flash tank is designed such that the moisture content in the steam at turbine inlet is less than 0.1%. The dimensions of the flash tank required for startup are determined by using the correlations for the droplet entrainment and carryover from a boiling pool by a streaming gas, developed by Kataoka and Ishii [4]. [Pg.275]


See other pages where Kataoka correlation is mentioned: [Pg.249]    [Pg.249]    [Pg.441]    [Pg.45]    [Pg.249]    [Pg.387]    [Pg.438]    [Pg.146]    [Pg.87]    [Pg.96]    [Pg.225]    [Pg.152]   
See also in sourсe #XX -- [ Pg.163 ]

See also in sourсe #XX -- [ Pg.163 ]




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