Composite membranes derived from immiscible NBR/SBR blends and amphiphilic montmorillonites: Permeability evaluation of these membranes for benzene and toluene in their binary mixtures

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Abstract

The present work deals with the study of separability potential of novel composite membranes derived from acrylonitrile butadiene rubber (NBR)/styrene butadiene rubber (SBR) immiscible blends after inducing compatibilization. The compatibilization step was achieved after the inclusion of montmorillonite fillers with a wide range of amphiphilic character. The montmorillonites can be arranged in an ascending sequence according to the increase in their organophilicity: Mont-0 < Mont-25 < Mont-50 < Mont-75 Mont-75 > Mont-100. The results may be simply explained considering the compatibilization process entitles different morphological states as a function of the clay organophilicity, which was additionally evidenced by recording the changes in the corresponding glass transition temperatures (Tg) of the blend components using differential scanning calorimetry (DSC). The results could also be correlated with the associated differences in the network characteristics: e.g., crosslinking density and molecular weight between two crosslinks. © the Partner Organisations 2014.

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Essawy, H. A., El-Shakour, A. A., Tawfik, M. E., Mohamed, E. F., El-Sabbagh, S. H., & El-Hashemy, M. A. (2014). Composite membranes derived from immiscible NBR/SBR blends and amphiphilic montmorillonites: Permeability evaluation of these membranes for benzene and toluene in their binary mixtures. RSC Advances, 4(63), 33555–33563. https://doi.org/10.1039/c4ra04901b

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