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January 14, 2026Foods6 citationsOpen Access

Non-Thermal Hydrodynamic Cavitation for Surplus Fruits and Vegetables: Improved Vitamin C and Bioactive Preservation

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JQJulian Quintero-QuirozNZNatalia Zuluaga-ArroyaveAVAlejandra Valencia-Naranajo

Key Points

  • The study aims to evaluate hydrodynamic cavitation's effectiveness compared to thermal processing in preserving nutritional components in surplus fruits and vegetables.
  • Compared non-thermal hydrodynamic cavitation (HC) to conventional thermal processing (TT)
  • Analyzed optimized purees from carrot, banana, yacón, beetroot, and gulupa
  • Measured vitamin C retention, total polyphenol content, and antioxidant capacity.
  • HC preserved vitamin C significantly better than TT, with 6.8 mg/100 g versus 0.6 mg/100 g
  • Total polyphenol content and antioxidant capacity were higher with HC, reaching FRAP up to 2580 μmol Eq-Trolox/100 g
  • TT improved sensory attributes but led to up to 80% losses of vitamin C and bioactive compounds.

Abstract

This study evaluated the impact of hydrodynamic cavitation (HC) versus conventional thermal processing (TT) for the valorization of fruit and vegetable surpluses, using optimized purees of carrot, banana, yacón, beetroot, and gulupa. HC-treated purees consistently preserved bioactive compounds, with vitamin C retention in purple carrot puree reaching 6.8 ± 0.6 mg/100 g, compared to only 0.6 ± 0.0 mg/100 g after thermal treatment. Total polyphenol content and antioxidant capacity (FRAP up to 2580 ± 126 μmol Eq-Trolox/100 g, DPPH inhibition up to 88.72% ± 0.80) were similarly superior with HC. While HC resulted in noticeably higher grumosity and fibrosity, limiting acceptance, TT improved sensory sweetness but degraded nutritional quality, causing up to 80% losses of vitamin C and bioactives. The findings confirm that HC is an effective non-thermal strategy for converting agri-food surpluses into functional ingredient bases, maximizing nutritional retention and energetic efficiency and supporting sustainable circular food systems.

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Cite This Study

Quintero-Quiroz et al. (2026) studied this question.

synapsesocial.com/papers/6966f2e313bf7a6f02c00382https://doi.org/10.3390/foods15020268
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