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- W2012160848 abstract "Foam separation has been investigated as a technique for removing ethylhexadecyldimethylammonium bromide, a cationic surfactant, from dilute solutions. An ideal foam model has been used to determine the surface excess accumulated at the solution-air interface and to predict the foam and drain concentration in a continuous foam separation process. It was found that the model was valid only under conditions of good drainage and perfect foam stability.An increase in column diameter for a feed of constant composition and supplied at a constant rate increased the concentration of the surfactant in the overhead stream. This highly desirable effect was accompanied by an increase in the drain rate. The results indicate that an increase in column diameter had an entirely beneficial effect on the efficiency of the separation.La technique de separation par moussage a ete etudiee pour l'extraction du bromure d'ethylhexadecyldimethylammonium a partir des solutions diluees de cet agent tensio-actif cationique. Un modele de mousse ideal a ete utilise pour la determination de l'exces superficiel a l'interface solution-air et pour la prediction de la concentration du produit de těte et de l'effluent dans une operation continue de separation par moussage. II a ete conclu que la validite du modele est limitee aux conditions de bon drainage et de parfaite stabilite de la colonne de mousse.Pour une alimentation de composition et de debit constants, l'augmentation du diametre de la colonne a pour effet d'augmenter la concentration du produit de těte ainsi que le debit de l'effluent. Les resultats indiquent que l'augmentation du diametre de la colonne a un effet avantageux sur le rendement." @default.
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- W2012160848 title "Surface adsorption and the effect of column diameter in the continuous foam separation process" @default.
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- W2012160848 doi "https://doi.org/10.1002/cjce.5450440604" @default.
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