DEVELOPMENT AND CHARACTERIZATION OF FILMS FROM POTATO STARCH MODIFIED BY DRY HEATING TREATMENT

Vol.2, 2025 - 332506
Poster
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Abstract

The widespread use of petroleum-based packaging has raised concerns regarding environmental impact and human health. This scenario has driven the search for sustainable alternatives based on natural and renewable polymers, such as starch. However, native starch exhibits poor mechanical performance and high hydrophilicity, which restricts its applications. These limitations can be addressed through starch modification. One promising approach is dry heat treatment (DHT), a simple and 'green' technique that induces carbonyl groups formation and alters the size and molecular distribution of starch chains, resulting in a newly functionalized polymer matrix. In this study, the modification of potato starch by DHT was investigated using various processing durations with the aim of developing films with potential packaging applications. Potato starch was modified at 130 °C for 1 (DHT_1h), 2 (DHT_2h), and 4h (DHT_4h). Films were produced by casting from a formulation containing 4% starch (native or modified), glycerol as a plasticizer (25% w/w starch d.b), and water as a solvent. The solution was poured into Petri dishes (0.18 g/cm2) and dried in an oven at 35 °C for 13 h. Afterwards, the films were conditioned for at least 48 h (75% RH and 25 °C) before characterization. The films were characterized by their mechanical properties (ASTM D882-18), relative crystallinity (XRD), water vapor diffusion (WVD) (ASTM E96/E96M-22a), moisture content, and light transmittance (UV-Vis spectroscopy). Film properties were influenced by DHT time, resulting from the complex balance between carbonyl group content and molecular size distribution.

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Institutions
  • 1 Universidade de São Paulo
  • 2 Universitat Politècnica de València
  • 3 University of Paris-Saclay
Track
  • Process Engineering and Emerging Technologies (ET)
Keywords
DHT
Bio-based packaging
Modified starch