Filling of Chitosan Film with Wax/Halloysite Microparticles for Absorption of Hydrocarbon Vapors

Author:

Caruso Maria Rita1ORCID,D'Agostino Giulia12,Wasserbauer Jaromír3ORCID,Šiler Pavel3ORCID,Cavallaro Giuseppe1ORCID,Milioto Stefana1ORCID,Lazzara Giuseppe1ORCID

Affiliation:

1. Department of Physics and Chemistry “Emilio Segrè” University of Palermo viale delle scienze Ed. 17 Palermo 90128 Italy

2. Dipartimento di Scienze dell'Antichità Università degli Studi di Roma “La Sapienza” Piazzale Aldo Moro 5 Rome 00185 Italy

3. Faculty of Chemistry Institute of Materials Science Brno University of Technology Purkyňova 118 Brno 61200 Czech Republic

Abstract

AbstractThe effect of the preparation protocol of chitosan (CHI) based films filled with wax microparticles stabilized by halloysite nanotubes (HNTs) in Pickering emulsions (PE) is investigated. The obtained results show that the addition of acetic acid (before or after the preparation of wax/HNT microspheres) affects the properties of the composite films as well as the colloidal stability of PE. The colloidal behavior of CHI/HNT/wax PE by optical microscopy and sedimentation tests are studied. On the other hand, the corresponding composite films (prepared by solvent casting method) are characterized through several techniques, including Scanning Electron Microscopy, UV–vis spectrometer, water permeability, and contact angle measurements. Dynamic Mechanical Analysis allows this to estimate the effect of wax microparticles on the tensile performances of CHI‐based films. As a general consideration, the filling of the CHI matrix with wax/HNT improves the physicochemical properties of the films. Finally, the efficacy of the films as adsorbents of n‐dodecane vapors is explored. Due to the presence of hydrophobic domains (wax embedded in CHI), the composite films possess higher adsorption efficiencies compared to pristine CHI. Accordingly, it can be stated that the combination of CHI with wax/HNT microparticles is promising to obtain biocompatible composite films useful for remediation purposes.

Funder

Ministero dell'Università e della Ricerca

Publisher

Wiley

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