2020
DOI: 10.4028/www.scientific.net/msf.1002.57
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Modification of Polylactic Acid/ Halloysite Bionanocomposites Using Electron Beam Radiation: Physical, Barrier and Thermal Properties

Abstract: This study aimed to develop novel Polylactic acid/ Halloysite (PLA/ HNTs) films which showed better properties when they were used for food packaging. They also displayed better mechanical, barrier, morphological and structural properties when the researchers analysed the impact of the electron beam irradiation on the nanomaterials. They prepared PLA-based nanocomposites containing 5 % w/w of HNTs using the solution casting process. These nanocomposites were further exposed to different ebeam doses (i.e., 0, 2… Show more

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“…For example, after electron beam exposure, halloysite-enriched PLA samples showed increased crystallinity and consequently higher T g value (from 310 to 316 °C of non-irradiated and irradiated samples, respectively). Additionally, at lower irradiation doses the lower water vapor permeability was measured (decrease of 20% for 20 kGy compared to 40 kGy irradiation) [ 135 ]. PLA can also be modified with the montmorillonite (MMT).…”
Section: Impact Of Non-thermal Food Processing On Selected Packaging ...mentioning
confidence: 99%
“…For example, after electron beam exposure, halloysite-enriched PLA samples showed increased crystallinity and consequently higher T g value (from 310 to 316 °C of non-irradiated and irradiated samples, respectively). Additionally, at lower irradiation doses the lower water vapor permeability was measured (decrease of 20% for 20 kGy compared to 40 kGy irradiation) [ 135 ]. PLA can also be modified with the montmorillonite (MMT).…”
Section: Impact Of Non-thermal Food Processing On Selected Packaging ...mentioning
confidence: 99%