EventsThe 2nd International Electronic Conference on Foods - "Future Foods and Food Technologies for a Sustainable World"
Published
This submission belongs to the session 2. Novel Technologies and Future Food of the event The 2nd International Electronic Conference on Foods - "Future Foods and Food Technologies for a Sustainable World"
Published date
14 Oct, 2021
Academic Editor
author-avatarDiego Moreno-Fernandez
Citation
Elok Waziiroh, Denisse Bender, Anisa Saric, Henry Jaeger, Regine Schoenlechner, Improving Gluten-Free Bread Properties by Ohmic Baking: Role of Starch and Flour, in Proceedings of The 2nd International Electronic Conference on Foods - "Future Foods and Food Technologies for a Sustainable World", 15 October–30 October 2021, MDPI: Basel, Switzerland, doi: 10.3390/Foods2021-11078
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Improving Gluten-Free Bread Properties by Ohmic Baking: Role of Starch and Flour

Anisa Saric 1
1. Department of Food Science and Technology, BOKU–University of Natural Resources and Life Sciences Vienna, Muthgasse 18, 1190 Vienna, Austria
2. Department of Agricultural Product Technology, Brawijaya University, Malang 65141 East-Java, Indonesia
Abstract

The rheological properties of Gluten-Free (GF) batter are an important factor to consider for designing GF bread recipes, which is critical when they are baked by ohmic heating. This research demonstrated that batter properties are not only significantly modified by the starch:water ratio, but also greatly by the starch source and structure, which influenced its physical properties (e.g., water holding capacity, swelling power, solubility, starch damage, and pasting properties). This study aimed to investigate the role of GF starch (and flour) from different sources (tuber and cereal), as well as the rheological behavior of GF batter and the final bread quality after baking with ohmic heating. The attempt was to thoroughly understand the interaction between the rheological properties and ohmic baking and to define a suitable viscosity range for this processing approach. All batters consistently exhibited shear-thinning and dominant viscous behavior. Between viscosity and ohmic-heated bread properties, a non-linear relationship was observed. These breads were generally higher in volume and softer in texture as opposed to conventional baked bread. Two categories of required water content or viscosity ranges were defined for estimating final ohmic-heated GF bread properties: low water content with a viscosity range of 47.12 – 56.20 Pa·s for B-type starches and medium water content with a low to medium viscosity range of 2.29 – 15.86 Pa·s for A-type starches. This fact showed that viscosity played a critical role in determining GF bread structure and crumb properties. This finding could be useful for further research to design GF batter viscosities for tailored bread quality.

Keywords
ohmic heating
gluten-free
starch:water ratio
rheology
viscosity
Manuscript
Poster
Foods-15-30.10.2021-Elok Waziiroh.pdf
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