The Experts below are selected from a list of 9 Experts worldwide ranked by ideXlab platform

H Renon - One of the best experts on this subject based on the ideXlab platform.

  • Chlorofluorohydrocarbon alcohol mixtures bubble pressures and saturated liquid molar volumes experimental data and modeling
    Chemical Engineering Science, 1994
    Co-Authors: S Laugier, Dominique Richon, H Renon
    Abstract:

    Abstract A static apparatus, described elsewhere, fitted with a variable volume cell was used to obtain new data. Results are given at two temperatures for the 1,1,2-trichlorotrifluoroethane (C 2 F 3 Cl 3 )—ethanol and 1,2-dichlorotetrafluoroethane (C 2 F 4 Cl 2 )—ethanol binary systems and four temperatures for the 1,2-dichlorotetrafluoroethane—trifluoroethanol and monochlorodifluoromethane (CHF 2 Cl)—trifluoroethanol binary systems. Solubility data are well represented with nonclassical mixing rules and temperature-dependent binary interaction parameters for all the cubic equations of state used. However, the Trebble—Bishnoi—Salim equation of state yields the best simultaneous representation of saturated liquid molar volumes

  • bubble curves and saturated liquid molar volumes for Chlorofluorohydrocarbon hydrocarbon mixtures experimental data and modeling
    Journal of Chemical & Engineering Data, 1994
    Co-Authors: S Laugier, Dominique Richon, H Renon
    Abstract:

    Vapor-liquid equilibria and liquid densities were obtained using a static apparatus fitted with a variable-volume cell which was described in detail by Valtz et al. (1). Results are given at four temperatures for the binary systems butane--1,2,2-trichlorotrifluoroethane, pentane--1,2-dichloro-1,1,2,2-tetrafluoroethane, hexane--1,2-dichloro-1,1,2,2-tetrafluoroethane, heptane--1,12-trichloro-1,2,2-trifluoromethane, heptane--1,2-dichloro-1,1,2,2-tetrafluoroethane, and benzene--1,2-dichloro-1,1,2,2-tetrafluoroethane and the ternary system 1,2-dichloro-1,1,2,2-tetrafluoroethane--1,1,2-trichloro-1,2,2-trifluoromethane--heptane. The best simultaneous representation of pressures and saturated liquid molar volumes at a given temperature and liquid composition for these mixtures is obtained using either the Patel-Teja or Trebble-Bishnoi-Salim equation of state (TBS EOS) in either their standard or generalized form (maximum deviation 0.7% in pressure and 3.1% in saturated liquid molar volume with the TBS EOS).

S Laugier - One of the best experts on this subject based on the ideXlab platform.

  • Chlorofluorohydrocarbon alcohol mixtures bubble pressures and saturated liquid molar volumes experimental data and modeling
    Chemical Engineering Science, 1994
    Co-Authors: S Laugier, Dominique Richon, H Renon
    Abstract:

    Abstract A static apparatus, described elsewhere, fitted with a variable volume cell was used to obtain new data. Results are given at two temperatures for the 1,1,2-trichlorotrifluoroethane (C 2 F 3 Cl 3 )—ethanol and 1,2-dichlorotetrafluoroethane (C 2 F 4 Cl 2 )—ethanol binary systems and four temperatures for the 1,2-dichlorotetrafluoroethane—trifluoroethanol and monochlorodifluoromethane (CHF 2 Cl)—trifluoroethanol binary systems. Solubility data are well represented with nonclassical mixing rules and temperature-dependent binary interaction parameters for all the cubic equations of state used. However, the Trebble—Bishnoi—Salim equation of state yields the best simultaneous representation of saturated liquid molar volumes

  • bubble curves and saturated liquid molar volumes for Chlorofluorohydrocarbon hydrocarbon mixtures experimental data and modeling
    Journal of Chemical & Engineering Data, 1994
    Co-Authors: S Laugier, Dominique Richon, H Renon
    Abstract:

    Vapor-liquid equilibria and liquid densities were obtained using a static apparatus fitted with a variable-volume cell which was described in detail by Valtz et al. (1). Results are given at four temperatures for the binary systems butane--1,2,2-trichlorotrifluoroethane, pentane--1,2-dichloro-1,1,2,2-tetrafluoroethane, hexane--1,2-dichloro-1,1,2,2-tetrafluoroethane, heptane--1,12-trichloro-1,2,2-trifluoromethane, heptane--1,2-dichloro-1,1,2,2-tetrafluoroethane, and benzene--1,2-dichloro-1,1,2,2-tetrafluoroethane and the ternary system 1,2-dichloro-1,1,2,2-tetrafluoroethane--1,1,2-trichloro-1,2,2-trifluoromethane--heptane. The best simultaneous representation of pressures and saturated liquid molar volumes at a given temperature and liquid composition for these mixtures is obtained using either the Patel-Teja or Trebble-Bishnoi-Salim equation of state (TBS EOS) in either their standard or generalized form (maximum deviation 0.7% in pressure and 3.1% in saturated liquid molar volume with the TBS EOS).

Dominique Richon - One of the best experts on this subject based on the ideXlab platform.

  • Chlorofluorohydrocarbon alcohol mixtures bubble pressures and saturated liquid molar volumes experimental data and modeling
    Chemical Engineering Science, 1994
    Co-Authors: S Laugier, Dominique Richon, H Renon
    Abstract:

    Abstract A static apparatus, described elsewhere, fitted with a variable volume cell was used to obtain new data. Results are given at two temperatures for the 1,1,2-trichlorotrifluoroethane (C 2 F 3 Cl 3 )—ethanol and 1,2-dichlorotetrafluoroethane (C 2 F 4 Cl 2 )—ethanol binary systems and four temperatures for the 1,2-dichlorotetrafluoroethane—trifluoroethanol and monochlorodifluoromethane (CHF 2 Cl)—trifluoroethanol binary systems. Solubility data are well represented with nonclassical mixing rules and temperature-dependent binary interaction parameters for all the cubic equations of state used. However, the Trebble—Bishnoi—Salim equation of state yields the best simultaneous representation of saturated liquid molar volumes

  • bubble curves and saturated liquid molar volumes for Chlorofluorohydrocarbon hydrocarbon mixtures experimental data and modeling
    Journal of Chemical & Engineering Data, 1994
    Co-Authors: S Laugier, Dominique Richon, H Renon
    Abstract:

    Vapor-liquid equilibria and liquid densities were obtained using a static apparatus fitted with a variable-volume cell which was described in detail by Valtz et al. (1). Results are given at four temperatures for the binary systems butane--1,2,2-trichlorotrifluoroethane, pentane--1,2-dichloro-1,1,2,2-tetrafluoroethane, hexane--1,2-dichloro-1,1,2,2-tetrafluoroethane, heptane--1,12-trichloro-1,2,2-trifluoromethane, heptane--1,2-dichloro-1,1,2,2-tetrafluoroethane, and benzene--1,2-dichloro-1,1,2,2-tetrafluoroethane and the ternary system 1,2-dichloro-1,1,2,2-tetrafluoroethane--1,1,2-trichloro-1,2,2-trifluoromethane--heptane. The best simultaneous representation of pressures and saturated liquid molar volumes at a given temperature and liquid composition for these mixtures is obtained using either the Patel-Teja or Trebble-Bishnoi-Salim equation of state (TBS EOS) in either their standard or generalized form (maximum deviation 0.7% in pressure and 3.1% in saturated liquid molar volume with the TBS EOS).

A R Ketring - One of the best experts on this subject based on the ideXlab platform.

  • development of the dy 166 ho 166 in vivo generator for radionuclide radiotherapy
    1993
    Co-Authors: S S Jurisson, G J Ehrhardt, W B Yelon, A R Ketring
    Abstract:

    The in-vivo generator concept in radiotherapy implies internal deposition of a parent nuclide of intermediate half life and energy that decays in-vivo to a short-lived daughter which emits high-energy betas, thus increasing both half life and beta energy of the radiotherapeutic. The authors have extended this concept to injection of low radiation-dosage Dy-166 radiopharmaceuticals which generate significant activities of high-dose Ho-166 daughter product after only 1 day, thus sparing non-target tissues during localization. Produced by efficient double neutron capture on Dy-164, 81.6-hour Dy-166 can be conveniently and efficiently separated from 26.8-hour Ho-166 daughter by extraction column chromatography using Chlorofluorohydrocarbon polymer support material and Di(2-ethylhexyl)-phosphoric acid as extractant. High purity Dy-166 can be obtained in about one hour and in a small volume in this manner.

S S Jurisson - One of the best experts on this subject based on the ideXlab platform.

  • development of the dy 166 ho 166 in vivo generator for radionuclide radiotherapy
    1993
    Co-Authors: S S Jurisson, G J Ehrhardt, W B Yelon, A R Ketring
    Abstract:

    The in-vivo generator concept in radiotherapy implies internal deposition of a parent nuclide of intermediate half life and energy that decays in-vivo to a short-lived daughter which emits high-energy betas, thus increasing both half life and beta energy of the radiotherapeutic. The authors have extended this concept to injection of low radiation-dosage Dy-166 radiopharmaceuticals which generate significant activities of high-dose Ho-166 daughter product after only 1 day, thus sparing non-target tissues during localization. Produced by efficient double neutron capture on Dy-164, 81.6-hour Dy-166 can be conveniently and efficiently separated from 26.8-hour Ho-166 daughter by extraction column chromatography using Chlorofluorohydrocarbon polymer support material and Di(2-ethylhexyl)-phosphoric acid as extractant. High purity Dy-166 can be obtained in about one hour and in a small volume in this manner.