Literature DB >> 30925357

Moderate intensity Pulsed Electric Fields (PEF) as alternative mild preservation technology for fruit juice.

R A H Timmermans1, H C Mastwijk2, L B J M Berendsen3, A L Nederhoff3, A M Matser3, M A J S Van Boekel4, M N Nierop Groot3.   

Abstract

Moderate intensity Pulsed Electric Fields (PEF) was studied for microbial inactivation as an alternative to high intensity PEF or to classical thermal pasteurization. The process is characterized by the application of electric pulses, allowing an increase of the product temperature by the ohmic heat generated by the pulses. A systematic evaluation of the effect of parameters electric field strength (E) and pulse width (τ) on the inactivation of Escherichia coli, Listeria monocytogenes, Lactobacillus plantarum, Salmonella Senftenberg and Saccharomyces cerevisiae in orange juice was carried out in a continuous flow system. A wide range of conditions was evaluated, and both E and τ were shown to be important in the efficacy to inactivate micro-organisms. Remarkably, PEF conditions at E = 2.7 kV/cm and τ = 15-1000 μs showed to be more effective in microbial inactivation than at E = 10 kV/cm and τ = 2 μs. Inactivation kinetics of the tested PEF conditions were compared to an equivalent thermal process to disentangle non-thermal effects (electroporation) from thermal effects responsible for the microbial inactivation. At standard high intensity PEF treatment a non-thermal inactivation at E = 20 kV/cm and τ = 2 μs pulses was observed and attributed to electroporation. Non-thermal effects could also be resolved with moderate intensity PEF at E = 2.7 kV/cm and pulse width between τ = 15-1000 μs. Microbial inactivation at these moderate intensity PEF conditions was studied in more detail at different pH and medium conductivity for E. coli and L. monocytogenes in watermelon juice and coconut water. Under moderate intensity PEF conditions the effectiveness of treatment was independent of pH for all evaluated matrices in the pH range of 3.8-6.0, whereas under high intensity PEF conditions the pH of the product is a critical factor for microbial inactivation. This suggests that the inactivation proceeds through a different mechanism at moderate intensity PEF, and speculations for this mechanism are presented. In conclusion, moderate intensity PEF conditions at E = 2.7 kV/cm and pulse width of 15-1000 μs has potential for industrial processing for the preservation of fruit juices and pH neutral liquid food products.
Copyright © 2019 The Authors. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Electric field strength; Microbiology; Ohmic heating; Preservation; Pulse width; Thermal reference

Mesh:

Year:  2019        PMID: 30925357     DOI: 10.1016/j.ijfoodmicro.2019.02.015

Source DB:  PubMed          Journal:  Int J Food Microbiol        ISSN: 0168-1605            Impact factor:   5.277


  5 in total

1.  Evaluation of Pulsed Electric Field and Conventional Thermal Processing for Microbial Inactivation in Thai Orange Juice.

Authors:  Chatchawan Kantala; Supakiat Supasin; Panich Intra; Phadungsak Rattanadecho
Journal:  Foods       Date:  2022-04-12

2.  Pulsed Electric Field Processing of Red Grapes (cv. Rondinella): Modifications of Phenolic Fraction and Effects on Wine Evolution.

Authors:  Piergiorgio Comuzzo; Sabrina Voce; Cristian Grazioli; Franco Tubaro; Marco Marconi; Gianmaria Zanella; Marco Querzè
Journal:  Foods       Date:  2020-04-02

3.  Selective Release of Recombinant Periplasmic Protein From E. coli Using Continuous Pulsed Electric Field Treatment.

Authors:  Felix Schottroff; Jens Kastenhofer; Oliver Spadiut; Henry Jaeger; David J Wurm
Journal:  Front Bioeng Biotechnol       Date:  2021-02-09

4.  Two-Step PEF Processing for Enhancing the Polyphenol Concentration and Decontaminating a Red Grape Juice.

Authors:  Carlota Delso; Alejandro Berzosa; Jorge Sanz; Ignacio Álvarez; Javier Raso
Journal:  Foods       Date:  2022-02-21

5.  Reversibility of membrane permeabilization upon pulsed electric field treatment in Lactobacillus plantarum WCFS1.

Authors:  E M J Vaessen; R A H Timmermans; M H Tempelaars; M A I Schutyser; H M W den Besten
Journal:  Sci Rep       Date:  2019-12-27       Impact factor: 4.379

  5 in total

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