Food Chemistry: X (Jun 2024)

Cold plasma: Unveiling its impact on hydration, rheology, nutritional, and anti-nutritional properties in food materials – An overview

  • Samuel Jaddu,
  • Shivani Sonkar,
  • Dibyakanta Seth,
  • Madhuresh Dwivedi,
  • Rama Chandra Pradhan,
  • Gulden Goksen,
  • Prakash Kumar Sarangi,
  • Anet Režek Jambrak

Journal volume & issue
Vol. 22
p. 101266

Abstract

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Non-thermal technologies, primarily employed for microbial inactivation and quality preservation in foods, have seen a surge in interest, with non-thermal plasma garnering particular attention. Cold plasma exhibits promising outcomes, including enhanced germination, improved functional and rheological properties, and microorganism destruction. This has sparked increased exploration across various domains, notably in hydration and rheological properties for creating new products. This review underscores the manifold benefits of applying cold plasma to diverse food materials, such as cereal and millet flours, and gums. Notable improvements encompass enhanced functionality, modified color parameters, altered rheological properties, and reduced anti-nutritional factors. The review delves into mechanisms like starch granule fragmentation, elucidating how these processes enhance the physical and structural properties of food materials. While promising for high-quality food development, overcoming challenges in scaling up production and addressing legal issues is essential for the technology's commercialization.

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