Овощи России (Mar 2024)

Dry fermented vegetable products of long-term storage and their integration into the diet of astronauts

  • E. V. Yanchenko,
  • K. A. Zykin,
  • N. E. Kaukhcheshvili,
  • A. A. Gryzunov

DOI
https://doi.org/10.18619/2072-9146-2024-2-27-36
Journal volume & issue
Vol. 0, no. 2
pp. 27 – 36

Abstract

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Relevance. Fermentation makes it possible to improve the properties of the final product, increase its nutritional value and organoleptic characteristics. It has been scientifically proven that the use of fermented foods (with high nutritional and biological value) on a regular basis has a positive effect on human health, increases immunity, improves the functioning of the gastrointestinal tract. Dry fermented products with a long shelf life can be recommended as part of the diet in space. The aim is to creation of a dry base for fermented long-term storage beverages based on cabbage and table carrots, applicable in the diet of space nutrition. Objects and methods of research. The objects of the study were the domestic hybrid of white cabbage F1 Severyanka and the domestic variety of carrot table Margosha, and the dry fermented products obtained from them. Results. It was found that, according to biochemical and organoleptic quality indicators, the domestic hybrid of white cabbage F1 Severyanka and the domestic carrot variety Margosha are suitable for various types of processing, including fermentation and manufacture of dried fermented products. The comparison of the number of microorganisms in fermented cabbage and cabbage dehydrated by LTVD (low temperature vacuum drying) and VFD (vacuum freeze drying methods was carried out. The survival rate of microorganisms was 1.62 times higher in LTVD. The ways of accelerating the fermentation process of table carrots are considered. The expediency of using starter cultures obtained on the basis of the fermented product has been confirmed. It has been found that using starter cultures in the form of a fermented product dried by the LTVD method accelerates fermentation and allows you to reach the desired pH level 1.33 times faster than the base one and does not affect the final organoleptic characteristics.

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