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Updated: Feb 28, 2026

Analysis of Fatty Acid Content and Composition in Microalgae
Published on: October 1, 2013
Oxidation Strength of PLA Filled with Algal Biomass and Rosemary Extract Powders for Food-Safe Handling
Traian Zaharescu1, Marius Bumbac2, Cristina Mihaela Nicolescu3
1Radiochemistry Center, National Institute for R&D in Electrical Engineering ICPE-CA Bucharest, 030138 Bucharest, Romania.
Abstract:
Poly(lactic acid) (PLA) is widely used in food-contact applications due to its bio-based origin, compostability, and transparency; however, its limited resistance to thermo-oxidative degradation remains a challenge for applications involving repeated thermal exposure. The moderate but repetitive heating conditions commonly encountered during food use and pre-recycling stages were analyzed for the samples filled with algal biomass and rosemary extract, additives accepted for use in the food industry. In this context, the present study introduces a comparative and application-driven approach by evaluating the effect of food-grade fillers-rosemary extract, spirulina biomass, and kelp biomass-incorporated at low loadings (0.5-3 wt%) on the thermal and oxidative behavior of PLA subjected to repeated heating at 80 °C. The presented results show algal biomasses as multifunctional fillers and benchmark their performance against a well-established natural extract. By combining DSC, FTIR, and chemiluminescence analyses, the study aims to clarify whether such bio-fillers act as stabilizing or destabilizing factors under realistic service-life thermal stress. This strategy provides insight into the suitability of algae-based fillers for food-contact PLA materials from both performance and recyclability perspectives.
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