High-Pressure Pasteurization of Oat Okara
Author:
Helstad Amanda1ORCID, Marefati Ali1, Ahlström Cecilia1ORCID, Rayner Marilyn1ORCID, Purhagen Jeanette1ORCID, Östbring Karolina1ORCID
Affiliation:
1. Department of Food Technology Engineering and Nutrition, Lund University, Naturvetarvägen 12, 223 62 Lund, Sweden
Abstract
The issue of the short microbiological shelf life of residues from the plant-based beverage industry creates a large food waste problem. Today, the oat beverage residue, in this study referred to as oat okara, is generally converted to energy or used as animal feed. High-pressure pasteurization (200 MPa, 400 MPa, and 600 MPa) was applied to oat okara to investigate the effect on shelf life and microbiological activity. A 4-week microbiological storage study was performed and thermal properties, viscosity, and water and oil holding capacities were analyzed. The total aerobic count, including yeast and mold, was significantly reduced (p < 0.05) by 600 MPa after four weeks of storage at 4 °C. The content of lactic acid bacteria after four weeks of storage was low for untreated oat okara (3.2 log CFU/g) but, for 600 MPa, the content remained at the detection limit (2.3 log CFU/g). Conversely, the treatments of 200 MPa and 400 MPa increased the microbial content of the total aerobic count significantly (p < 0.05) after two weeks in comparison to untreated oat okara. The thermal properties of untreated and high-pressure-treated oat okara demonstrated an increase in protein denaturation of the 12S globulin, avenalin, when higher pressure was applied (400–600 MPa). This was also confirmed in the viscosity measurements where a viscosity peak for avenalin was only present for untreated and 200 MPa treated oat okara. The water holding capacity did not change as a function of high-pressure treatment (3.5–3.8 mL/g) except for the treatment at 200 MPa, which was reduced (2.7 mL/g). The oil holding capacity was constant (1.2–1.3 mL/g) after all treatments. High-pressure pasteurization of 600 MPa reduced the microbial content in oat okara resulting in a shelf life of 2–4 weeks. However, more research is required to identify the microorganisms in oat okara to achieve a microbiologically safe product that can be used for food applications.
Funder
Sweden’s Innovation Agency
Subject
Plant Science,Health Professions (miscellaneous),Health (social science),Microbiology,Food Science
Reference35 articles.
1. Ritchie, H., and Roser, M. (2020). Environmental Impacts of Food Production, Our World in Data. 2. Haas, R., Schnepps, A., Pichler, A., and Meixner, O. (2019). Cow milk versus plant-based milk substitutes: A comparison of product image and motivational structure of consumption. Sustainability, 11. 3. (2023, October 11). Markets and Markets. Dairy Alternatives Market by Source (Soy, Almond, Coconut, Oats, Rice, Hemp), Application (Milk, Yogurt, Ice creams, Cheese, Creamers), Distribution Channel (Supermarkets, Health Food Stores, Pharmacies), Formulation and Region—Forecast to 2028. Available online: https://www.marketsandmarkets.com/Market-Reports/dairy-alternative-plant-milk-beverages-market-677.html. 4. Milk Analog: Plant based alternatives to conventional milk, production, potential and health concerns;Paul;Crit. Rev. Food Sci. Nutr.,2020 5. Ignaszewski, E. (2021). 2021 U.S. Retail Market Insights Plant-Based Foods, The Good Food Institute.
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