Formation of Whipped Yeast-Free Bread Crumb with Intensive Microwave Convective Baking

The development of the technology of whipped yeast-free bread made from whole wheat flour is an urgent task of baking. To implement this technology, it is necessary to properly manage the foaming process of whipped yeast-free dough while preserving the highly porous structure of the crumb of whipped...

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Main Authors: Gazibeg O. Magomedov, Anatoly А. Khvostov, Aleksey А. Zhuravlev, Magomed G. Magomedov, Aleksei S. Taratukhin, Inessa V. Plotnikova
Format: Article
Language:Russian
Published: Kemerovo State University 2022-10-01
Series:Техника и технология пищевых производств
Subjects:
Online Access:https://fptt.ru/en/issues/20632/20576/
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author Gazibeg O. Magomedov
Anatoly А. Khvostov
Aleksey А. Zhuravlev
Magomed G. Magomedov
Aleksei S. Taratukhin
Inessa V. Plotnikova
author_facet Gazibeg O. Magomedov
Anatoly А. Khvostov
Aleksey А. Zhuravlev
Magomed G. Magomedov
Aleksei S. Taratukhin
Inessa V. Plotnikova
author_sort Gazibeg O. Magomedov
collection DOAJ
description The development of the technology of whipped yeast-free bread made from whole wheat flour is an urgent task of baking. To implement this technology, it is necessary to properly manage the foaming process of whipped yeast-free dough while preserving the highly porous structure of the crumb of whipped dough blanks and thin-walled bread crust during baking. The purpose of the work is to study the quality changes and establish the modes of preparation of churned yeast-free dough, as well as churned dough blanks with their combined microwave-convective heating. In the work, samples of churned yeast-free dough obtained on a mixing-churning-forming plant and churned test blanks after pre-microwave heating with a finely porous crumb formed were studied. For an objective assessment of the porosity of bread crumb, a method of optical quantitative analysis of the structure of air bubbles has been developed. It was found that, taking into account the restriction on the maximum size of air bubbles in the crumb, churned yeast-free test blanks with a density of 0.40 ± 0.03 g/cm3 with finely dispersed air bubbles were preliminarily obtained, in order to form a stable highly porous structure, they were previously subjected to microwave heating at a temperature of 65 ± 1°C in the center of the crumb, and then convective heating at at a temperature of 99 ± 1°C in the center of the crumb to form a thin-walled crust of bread. The conducted studies have shown the dependence of changes in the porosity of the crumb, the formation of its structure on the duration of microwave heating of churned dough blanks. The rational duration of pre-microwave heating of churned dough blanks is determined – 70–80 s and final convective heating during bread baking – up to 14 min. The use of combined microwave-convective heating of churned dough blanks reduces the baking process by 26 min. The presented approach, together with the method of optical evaluation of air bubbles, allows us to develop an algorithm for optimal control of the process of combined baking bread. The accelerated technology of churned yeast-free bread has been developed and is highly promising for widespread implementation in civil and military bakery.
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spelling doaj.art-8273d99d8d984720b706aedf94799ce82022-12-22T03:25:32ZrusKemerovo State UniversityТехника и технология пищевых производств2074-94142313-17482022-10-0152342643810.21603/2074-9414-2022-3-2375Formation of Whipped Yeast-Free Bread Crumb with Intensive Microwave Convective BakingGazibeg O. Magomedov0https://orcid.org/0000-0002-7201-8387Anatoly А. Khvostov1https://orcid.org/0000-0002-3836-9407Aleksey А. Zhuravlev2https://orcid.org/0000-0002-2194-767XMagomed G. Magomedov3https://orcid.org/0000-0003-2494-4973Aleksei S. Taratukhin4https://orcid.org/0000-0002-9880-9726Inessa V. Plotnikova5https://orcid.org/0000-0001-5959-6652Voronezh State University of Engineering Technologies, Voronezh, RussiaVoronezh State University of Engineering Technologies, Voronezh, Russia Military Educational and Scientific Centre of the Air Force N.E. Zhukovsky and Yu.A. Gagarin Air Force Academy of the Ministry of Defence of the Russian Federation, Voronezh, RussiaVoronezh State University of Engineering Technologies, Voronezh, RussiaVoronezh State University of Engineering Technologies, Voronezh, RussiaVoronezh State University of Engineering Technologies, Voronezh, RussiaThe development of the technology of whipped yeast-free bread made from whole wheat flour is an urgent task of baking. To implement this technology, it is necessary to properly manage the foaming process of whipped yeast-free dough while preserving the highly porous structure of the crumb of whipped dough blanks and thin-walled bread crust during baking. The purpose of the work is to study the quality changes and establish the modes of preparation of churned yeast-free dough, as well as churned dough blanks with their combined microwave-convective heating. In the work, samples of churned yeast-free dough obtained on a mixing-churning-forming plant and churned test blanks after pre-microwave heating with a finely porous crumb formed were studied. For an objective assessment of the porosity of bread crumb, a method of optical quantitative analysis of the structure of air bubbles has been developed. It was found that, taking into account the restriction on the maximum size of air bubbles in the crumb, churned yeast-free test blanks with a density of 0.40 ± 0.03 g/cm3 with finely dispersed air bubbles were preliminarily obtained, in order to form a stable highly porous structure, they were previously subjected to microwave heating at a temperature of 65 ± 1°C in the center of the crumb, and then convective heating at at a temperature of 99 ± 1°C in the center of the crumb to form a thin-walled crust of bread. The conducted studies have shown the dependence of changes in the porosity of the crumb, the formation of its structure on the duration of microwave heating of churned dough blanks. The rational duration of pre-microwave heating of churned dough blanks is determined – 70–80 s and final convective heating during bread baking – up to 14 min. The use of combined microwave-convective heating of churned dough blanks reduces the baking process by 26 min. The presented approach, together with the method of optical evaluation of air bubbles, allows us to develop an algorithm for optimal control of the process of combined baking bread. The accelerated technology of churned yeast-free bread has been developed and is highly promising for widespread implementation in civil and military bakery.https://fptt.ru/en/issues/20632/20576/breadcrumbmicrowavebakingporosityquality
spellingShingle Gazibeg O. Magomedov
Anatoly А. Khvostov
Aleksey А. Zhuravlev
Magomed G. Magomedov
Aleksei S. Taratukhin
Inessa V. Plotnikova
Formation of Whipped Yeast-Free Bread Crumb with Intensive Microwave Convective Baking
Техника и технология пищевых производств
bread
crumb
microwave
baking
porosity
quality
title Formation of Whipped Yeast-Free Bread Crumb with Intensive Microwave Convective Baking
title_full Formation of Whipped Yeast-Free Bread Crumb with Intensive Microwave Convective Baking
title_fullStr Formation of Whipped Yeast-Free Bread Crumb with Intensive Microwave Convective Baking
title_full_unstemmed Formation of Whipped Yeast-Free Bread Crumb with Intensive Microwave Convective Baking
title_short Formation of Whipped Yeast-Free Bread Crumb with Intensive Microwave Convective Baking
title_sort formation of whipped yeast free bread crumb with intensive microwave convective baking
topic bread
crumb
microwave
baking
porosity
quality
url https://fptt.ru/en/issues/20632/20576/
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