Search results for " melt processing"

showing 5 items of 5 documents

Incorporation of nisin in poly (ethylene-co-vinyl acetate) films by melt processing: a study on the antimicrobial properties

2011

Both industry and academia have shown a growing interest in materials with antimicrobial properties suitable for food packaging applications. In this study, we prepared and characterized thin films of ethylene-co-vinyl acetate (EVA) copolymer with antimicrobial properties. The films were prepared with a film blowing process by incorporating a nisin preparation as an antimicrobial agent in the melt. Two grades of EVA containing 14 and 28% (wt/wt) vinyl acetate (EVA 14 and EVA 28, respectively) and two commercial formulations of nisin with different nominal activities were used. The effect of the nisin concentration also was evaluated. The films with the highest antimicrobial activity were th…

Materials scienceEthyleneTime FactorsFood ContaminationBacterial Physiological PhenomenaMicrobiologychemistry.chemical_compoundBacteriocinotorhinolaryngologic diseasesCopolymerVinyl acetateOrganic chemistryHumansNisinNisinPoly ethyleneDose-Response Relationship DrugFood PackagingTemperatureAntimicrobialAnti-Bacterial AgentsFood packagingchemistryConsumer Product SafetyBiofilmsFood MicrobiologyEVA antimicrobial properties nisin melt processing controlled releasePolyvinylsFood ScienceNuclear chemistry
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Photo-oxidative degradation of poly(ethylene-co-vinyl acetate)/nisin antimicrobial films

2012

The photo-oxidative behaviour of different antimicrobial blown films based on poly (ethylene-co-vinyl acetate) (EVA) was studied. In particular, two samples of EVA containing different level of vinyl acetate comonomer (namely 14% and 28%) were used as matrices while nisin at different concentrations was used as antimicrobial agent. The degradation was followed by analyzing the changes in the spectroscopic behaviour and of the elongation at break measured in tensile tests. Moreover, changes in the antimicrobial activity of the films were followed by measuring the inhibition halo in agar diffusion tests. The results indicate that nisin acts as an excellent UV stabilizer for both samples of EV…

Materials sciencefood.ingredientPolymers and PlasticsComonomerCondensed Matter PhysicsAntimicrobialchemistry.chemical_compoundfoodchemistryMechanics of MaterialsUltimate tensile strengthPolymer chemistryPhoto-oxidation Antimicrobial films EVA Nisin Melt processingMaterials ChemistryVinyl acetateAgarDegradation (geology)sense organsElongationNisin
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BIODEGRADABLE BILAYER FILMS PREPARED BY CO-EXTRUSION

2017

The sensitivity for reducing packaging waste drove academic and industrial efforts to search compostable or biodegradable bio-sourced polymeric materials. Multilayer systems represent a suitable strategy to obtain the required properties and to improve biopolymer performance. The aim of the current work is the coextrusion film blowing of a biodegradable bilayer film PLA/MaterBi with the purpose to overcome the drawbacks of the individual components.

PLA biodegradable bilayer film melt processing hydrolytic degradation pH
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Polymer-based 'green' composites

2009

Settore ING-IND/22 - Scienza E Tecnologia Dei Materialiecocomposites biodegradable polymers mater-bi melt processing thermoplastics biocomposites
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IMPROVED STABILITY OF GRAPHENE OXIDE-SILICA NANOHYBRIDS AND RELATED POLYMER-BASED NANOCOMPOSITES

2014

Although its promising properties make the graphene oxide (GO) very interesting as filler for polymer matrices, some problems related to its thermal stability in the region which ranges from 80 to 200 °C, are crucial for the possibility to melt process GO together with practically all the polymers [1,2]. Moreover, above 100 °C GO lamellae were found to become stacked. In this work, two different ways to preserve the GO structure and ensure its dispersion within different polymer matrices have been investigated and schematized in Fig. 1. Exfoliation plays a key-role in the achievement of good mechanical properties since it preserves the GO from both stacking phenomena. The capability of sili…

graphene oxide nanosilica nanohybrids thermal treatment melt processing.
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