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Dough Rheology and Baked Product Texture

Dough Rheology and Baked Product Texture
Author: H. Faridi
Publisher: Springer Science & Business Media
Total Pages: 609
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 1461308615

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Cereal chemists are interested in rheology because the dough undergoes some type of deformation in every phase of the conversion of flour into baked products. During mixing, dough is subjected to extreme deformations, many that exceed the rupture limit; during fermentation, the deformations are much smaller and therefore exhibit a different set of rheological properties; during sheeting and molding, deformations are at an intermediate level; and, finally, during proofing and baking, the dough is subjected to a range of deformations at varying temperatures. Accordingly, the application of rheological concepts to explain the behavior of dough seems a natural requirement of research on the interrelationships among flour constituents, added ingredients, process parameters, and the required characteristics of the final baked product. At any moment in the baking process, the rheological behavior, that is, the nature of the deformation, exhibited by a specific dough derives from the applied stress and how long the stress is maintained. The resulting deformation may be simple, such as pure viscous flow or elastic deformation, and therefore easy to define precisely. Moreover, under some conditions of stress and time (i. e. , shear rate), doughs behave as ideal materials and their behavior follows theory derived from fundamental concepts. Under usual conditions encountered in baking, however, the rheological behavior is far from ideal; shear rates vary widely and sample size and dimensions are ill-defined.


Investigating Dough Rheology and Texture Properties of Bakery Products Containing Soy Or Pulse Flours

Investigating Dough Rheology and Texture Properties of Bakery Products Containing Soy Or Pulse Flours
Author: Yiqin Zhang
Publisher:
Total Pages: 0
Release: 2021
Genre:
ISBN:

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Soybean and pulse flours are excellent source of various macro- and micro-nutrients, such as proteins, dietary fibers, minerals, and bioactive compounds associated with health benefits. They are becoming increasingly important to the food industry as product formulators and consumers are seeking nutritionally attractive ingredients. Fortification of cereal foods with pulse or soybean flour represents a promising approach to enhance their nutritional value, health benefits, and flavor profiles. However, the lack of gluten protein in these flours results in undesirable dough rheological properties and baked products with poor texture and other quality defects. This thesis is comprised of two studies that aimed to investigate and understand the effect of incorporating soybean or pulse flours on the dough properties and bakery product quality. In the first study, we investigated the effect of formulation (e.g., shortening, sugar, and water) and pretreatment of soy flour on dough properties and cookie texture in a gluten-free (GF) system. Cookies were formulated with composite flours containing commercial GF flour and original or pretreated soy flour (70/30). Reducing agents (cysteine, glutathione, and sodium sulfite) and protease (Flavourzyme) were used for soy flour pretreatment, respectively. The modified proteins were characterized by analyzing contents of free sulfhydryl and free amino group and SDS-PAGE profiles. Dough properties were measured using mixograph and texture analyzer. Cookie quality was determined by analyzing spread ratio, texture, color, and moisture content. Results showed that adding relatively higher amount of sugar, shortening, and water greatly increased cookie spread and improved cookie cracking pattern, though it also increased the stickiness of the dough. Pretreatment of soy flour with reducing agent or protease reduced protein molecular size, and thus, weakened the GF dough, which also led to increased cookie spread and better cracking pattern. In the second study, we investigated the effect of different types (yellow pea, green pea, red lentil, and chickpea) and amounts (0-25%) of whole pulse flours on whole wheat flour-based dough properties and bread quality. Pulse grains were ground using a Wiley mill to obtain whole pulse flour. Mixolab was used to analyze mixing and pasting properties of the whole wheat/pulse composite flours, and bread was characterized. Results showed that increasing the amount of pulse flour in the composite significantly weakened the dough and decreased dough viscosity due to a dilution of gluten proteins. Bread specific volume decreased, and hardness increased with higher amount of pulse flours. Among all the tested pulse flours, the composite flour containing yellow pea flour had overall better baking performances. This research demonstrated the potential of utilizing soybean and pulse flours for bakery applications. The knowledge will be useful for the industry in developing new gluten-free or fortified bakery products.


Food Texture and Rheology

Food Texture and Rheology
Author: Philip Sherman
Publisher:
Total Pages: 478
Release: 1979
Genre: Technology & Engineering
ISBN:

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ABSTRACT: Twenty-six papers presented at a symposium for theInternational Union of Food Science and Technology, are included. Two categories of papers are offered: 1) critical reviews of present knowledge on specificied themes, and 2) unpublished data and theory. The papers' approaches are multidisciplinary. Topics included the 1) psychophysics of the sensory evaluation of textural properties; 2) instrumental evaluation of textural properties and common problems associated with measurement; 3) food processing aspects of food rheology; 4) rheological properties of vegetables proteins and their relevance to the preparation of meat extenders and substitutes; 5) the rheology and microstructure of baker's dough and baked products; and 6) the relationship between structure and rheological properties of commodities.


Handbook of Food Engineering

Handbook of Food Engineering
Author: Dennis R. Heldman
Publisher: CRC Press
Total Pages: 1310
Release: 2018-12-19
Genre: Science
ISBN: 0429831560

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As the complexity of the food supply system increases, the focus on processes used to convert raw food materials and ingredients into consumer food products becomes more important. The Handbook of Food Engineering, Third Edition, continues to provide students and food engineering professionals with the latest information needed to improve the efficiency of the food supply system. As with the previous editions, this book contains the latest information on the thermophysical properties of foods and kinetic constants needed to estimate changes in key components of foods during manufacturing and distribution. Illustrations are used to demonstrate the applications of the information to process design. Researchers should be able to use the information to pursue new directions in process development and design, and to identify future directions for research on the physical properties of foods and kinetics of changes in the food throughout the supply system. Features Covers basic concepts of transport and storage of liquids and solids, heating and cooling of foods, and food ingredients New chapter covers nanoscale science in food systems Includes chapters on mass transfer in foods and membrane processes for liquid concentration and other applications Discusses specific unit operations on freezing, concentration, dehydration, thermal processing, and extrusion The first four chapters of the Third Edition focus primarily on the properties of foods and food ingredients with a new chapter on nanoscale applications in foods. Each of the eleven chapters that follow has a focus on one of the more traditional unit operations used throughout the food supply system. Major revisions and/or updates have been incorporated into chapters on heating and cooling processes, membrane processes, extrusion processes, and cleaning operations.


Phase Transitions in Foods

Phase Transitions in Foods
Author: Yrjo H Roos
Publisher: Academic Press
Total Pages: 381
Release: 2015-10-05
Genre: Technology & Engineering
ISBN: 0124079229

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Phase Transitions in Foods, Second Edition, assembles the most recent research and theories on the topic, describing the phase and state transitions that affect technological properties of biological materials occurring in food processing and storage. It covers the role of water as a plasticizer, the effect of transitions on mechanical and chemical changes, and the application of modeling in predicting stability rates of change. The volume presents methods for detecting changes in the physical state and various techniques used to analyze phase behavior of biopolymers and food components. It should become a valuable resource for anyone involved with food engineering, processing, storage, and quality, as well as those working on related properties of pharmaceuticals and other biopolymers. Contains descriptions of non-fat food solids as "biopolymers" which exhibit physical properties that are highly dependent on temperature, time, and water content Details the effects of water on the state and stability of foods Includes information on changes occurring in state and physicochemical properties during processing and storage The only book on phase and state transitions written specifically for the applications in food industry, product development, and research


Rheology and Texture in Food Quality

Rheology and Texture in Food Quality
Author: John M. DeMan
Publisher: Westport, Conn. : AVI Publishing Company
Total Pages: 588
Release: 1976
Genre: Aliments - Texture
ISBN: 9780870551970

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Mechanical properties of food. Microstructure of food and its relation to texture. Instrumental measurement of food texture. Applications of instrumetns for measurement. Interpretation of force curve from instrumental measurements. texture of fruits and vegetables. Texture of dough, pasta and fat products. The tectural characterisitics of dairy products., of meat and its measurement. Starch texture. Rheology of chocolate. Engineerig food texture. Textural characteristics of food emulsions. functions of emulsifiers in relation to food texture. Sensory measurement of food texture. The textural profile. Physhophysical relations in texture.