Bio-Based and Biodegradable Plastics From Passive Barrier to Active Packaging Behavior


English[eng]


bio-HDPE||GA||natural additives||thermal resistance||UV stability||food packaging||antimicrobial properties||polyethylene||birch bark extract||ultrasound||thermoplastic starch||biodegradation||permeability||diffusion||sorption||porous membranes||hydrophilic and hydrophobic polymers||PLA bottle||bio-based and biodegradable polymers||life cycle assessment||environmental impact||ReCiPe2016 method||packaging material||bio-based polymer composite||natural rubber||water absorption||mycological test||biodegradability||mechanical properties||poly(3-hydroxybutyrate) (PHB)||polylactic acid (PLA)||biomaterials||gas permeability||gas diffusion||segmental dynamics||electron spin resonance (ESR)||scanning electron microscopy (SEM)||differential scanning calorimetry (DSC)||poly(3-hydroxybutyrate)||poly(3-hydroxybutyrate-co-3-hydroxyvalerate)||poly(3-hydroxybutyrate-co-4-methyl-3-hydroxyvalerate)||hydrolysis||pancreatic lipase||mechanical behavior||chitosan||polymeric films||crosslinking||genipin||sorption isotherm||degree of crosslinking||polylactide||poly(ethyleneglycol)||blending under shear deformations||electrospinning||oil absorption||Monte Carlo||bio-based polymers||biodegradable packaging||biopolymer structure||encapsulation||life cycle analysis