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Critical properties Joback

Normal boiling point and critical properties (Joback and Reid, 1987). [Pg.54]

Critica.1 Properties. Several methods have been developed to estimate critical pressure, temperature, and volume, U). Many other properties can be estimated from these properties. Error propagation can be large for physical property estimations based on critical properties from group contribution methods. Thus sensitivity analyses are recommended. The Ambrose method (185) was found to be more accurate (186) than the Lyderson (187) method, although it is computationally more complex. The Joback and Reid method (188) is only slightly less accurate overall than the Ambrose method, and is more accurate for some specific substances. Other methods of lesser overall accuracy are also available (189,190) (T, (191,192) (T, P ),... [Pg.253]

Upon completion of data collection, estimation of the critical properties for the remaining compounds was performed using the group contribution method of Joback as given by Reid, Prausnitz and Poling (24). A comparison of the estimates with experimental data was favorable with average absolute errors of only 0.9%, 6.3 %, and 4.4% for critical temperature (465 compounds), pressure (453 compounds) and volume (345 compounds). [Pg.1]

Choice of critical properties for the calulation of solubility (y) of solids in CO2 using the PR equation (1 - Ambrose with Tb Constantinou Gani 2 - Ambrose with Tb Lydersen modified by Joback 3 - Lydersen modified by Joback 4 - Constantinou and Gani). [Pg.267]

The compilations of CRC (1-2), Daubert and Danner (3), Dechema (15), TRC (13-14), Vargaftik (18), and Yaws (19-36) were used extensively for critical properties. Estimates of critical temperature, pressure, and volume were primarily based on the Joback method (10-12) and proprietary techniques of the author. Critical density was determined from dividing molecular weight by critical volume. Critical compressibility factor was ascertained from application of the gas law at the critical point. Estimates for acentric factor were primarily made by using the Antoine equation for vapor pressure (11-12). [Pg.7]

Organic molecules The Ambrose method is recommended for all three critical properties of hydrocarbons and n-alcohols. The Joback method is recommended for r and of all other organic molecules. Fedors method is recommended for of these compounds, but the Joback method can also be used. [Pg.497]

Of the many procedures available for estimating critical properties, those based on GC are the most accurate. The following relationships proposed by Joback (1984) give accurate predictions ... [Pg.37]

Partial molar volumes and the isothermal compressibility can be calculated from an equation of state. Unfortunately, these equations require properties of the components, such as critical temperature, critical pressure and the acentric factor. These properties are not known for the benzophenone triplet and the transition state. However, they can be estimated very roughly using standard techniques such as Joback s modification of Lyderson s method for Tc and Pc and the standard method for the acentric factor (Reid et al., 1987). We calculated the values for the benzophenone triplet assuming a structure similar to ground state benzophenone. The transition state was considered to be a benzophenone/isopropanol complex. The values used are shown in Table 1. [Pg.119]

Estimation Methods for Critical and Other Properties 257 Table 6.9-1 Joback Group Contribution.s to Pure Component Propertie.s... [Pg.257]

The normal boiling point is an easily accessible physical property and has been measured for a large number of substances. In case that it is not available, the normal boiling point can be estimated with group contribution methods, for example, Joback and Reid [4] and Constantinou and Gani [5], analogously to the estimation of the critical point. The estimation formula for the Joback method is... [Pg.72]


See other pages where Critical properties Joback is mentioned: [Pg.253]    [Pg.194]    [Pg.248]    [Pg.253]    [Pg.1150]    [Pg.1265]    [Pg.1147]    [Pg.47]   


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