Chemical and Physical Characterization of Sorghum Milling Fractions and Sorghum Whole Meal Flours Obtained via Stone or Roller Milling

Химическая и физическая характеристика фракций сорго, полученных при помоле, и цельнозерновой муки из сорго, произведенной с использованием жернового или вальцового помола
Rubina Rumler, Denisse Bender, Sofia Speranza, Johannes Frauenlob, Lydia Gamper, J. Op Den Hoek, Henry Jäger, Regine Schönlechner
2021-04-16

flour fractionsroller millingsorghum millingstone millingwhole-grain flour
Due to climate change sorghum might gain widespread in the Western countries, as the grain is adapted to hot climate. Additionally sorghum contains a notable amount of health-promoting nutrients. However, Western countries do not have a long history of sorghum consumption, and thus little experience in processing it. Milling systems in these areas were mostly developed for wheat or rye milling. In the present work, the effectiveness of sorghum milling when using a stone and a roller milling system (pilot scale) was investigated as well as its impact on the chemical and physical properties of the obtained flour fractions and whole-grain flours. Results showed that both milling systems could be successfully adapted to producing chemically and physically distinct flour and bran fractions from the small sorghum kernels. Fractions with increased bran material that contained higher amounts of ash, protein, fat, total dietary fiber, and total phenolic content but less starch, showed enhanced water absorption indices and water solubility indices. Interestingly, no significant difference was found in the ash and fat content of the different fractions obtained from stone milling. Overall, the study provided information on the production and composition of distinct flour fractions, which offer a wider range of future food applications.
1
Bran-enriched fractions showed increased water absorption indices and water solubility indices.
2
Fractions containing more bran had higher ash, protein, fat, total dietary fiber, and total phenolic content, but lower starch levels.
3
Stone and roller milling systems were successfully adapted to produce chemically and physically distinct sorghum flour and bran fractions from small kernels.
4
Stone milling produced fractions without significant differences in ash and fat content.
5
The distinct sorghum fractions and whole-grain flours provide expanded possibilities for future food applications.

Sorghum grain milling fractions and whole-meal flours produced by pilot-scale stone or roller milling

The effects of stone and roller milling on the chemical composition and physical properties of sorghum flour and bran fractions and whole-meal flours

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Publication Date
2021-04-16
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Authors
Rubina Rumler
Denisse Bender
Sofia Speranza
Johannes Frauenlob
Lydia Gamper
J. Op Den Hoek
Henry Jäger
Regine Schönlechner
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