A. Montgomery, Anike Roberson, J. Goddard, Gavin L. Sacks

2026.2.28ACS Food Science & Technology

DOI: 10.1021/acsfoodscitech.5c01102

Abstract

High Resolution Image Download MS PowerPoint Slide Aluminum cans are widely used for single-serve beverage packaging, but corrosive components found in certain beverages (e.g., Cl – in some sports and energy drinks) can limit shelf life. Here, we report that certain forms of chitosan, a widely used food ingredient and dietary supplement, will inhibit corrosion and extend the shelf life of beverages in aluminum cans. A low-molecular-weight (500 Da) commercial chitosan preparation was determined to be a promising anticorrosive at concentrations as low as 0.5 g/L based on accelerated aging treatments of coupons followed by electrochemical impedance spectroscopy (EIS) using a high Cl – sports drink as a test beverage. In long-term pack tests, addition of the chitosan preparation to the drink prior to canning resulted in 10-fold lower dissolved aluminum (0.14 ± 0.01 vs 5.25 ± 2.63 mg/L) and an elimination of visible pinhole corrosion and leaking after eight months ( n = 3, p < 0.05, Steel’s test). Pretreatment of cans with a solution of the chitosan for 6 days at 20 °C prior to filling and seaming also decreased dissolved aluminum (1.48 ± 0.63 mg/L) after 8 months vs control (5.24 mg/L). Comparison of the corrosion inhibition of ten commercial chitosan sources in of varying molecular weights (MW) and degrees of deacetylation (DDA) indicated that certain lower-molecular-weight forms (5000 Da or less) showed anticorrosive effects, but no anticorrosive effect was observed for any of the higher-molecular-weight forms (>250 kDa) ( n = 3, p < 0.05, Steel’s test). To the authors’ knowledge, this study provides the first evidence that an approved food ingredient can extend the shelf life of a corrosive beverage in aluminum cans. The strategy potentially could be extended to other beverages or semisolid foods in metal packaging.

Citation format

MONTGOMERY, A., et al. Corrosion inhibition in aluminum beverage cans using low-molecular-weight chitosan as an anticorrosive ingredient. ACS Food Science & Technology, 2026, 6(3): 746–756.