Pulse Flour Characteristics from a Wheat Flour Miller's Perspective: A Comprehensive Review

Характеристики муки из зернобобовых культур с точки зрения технолога по переработке пшеничной муки: всесторонний обзор
Sunil Thakur, Martin G. Scanlon, Robert T. Tyler, Aidin Milani, Jitendra Paliwal
2019-01-15

dehullingleguminous commoditiesmechanochemical transformationspulse flour millingwheat flour milling
Pulses (grain legumes) are increasingly of interest to the food industry as product formulators and consumers seek to exploit their fiber-rich and protein-rich reputation in the development of nutritionally attractive new products, particularly in the bakery, gluten-free, snack, pasta, and noodle categories. The processing of pulses into consistent high-quality ingredients starts with a well-defined and controlled milling process. However, in contrast to the extensive body of knowledge on wheat flour milling, the peer-reviewed literature on pulse flour milling is not as well defined, except for the dehulling process. This review synthesizes information on milling of leguminous commodities such as chickpea (kabuli and desi), lentil (green and red), pea, and bean (adzuki, black, cowpea, kidney, navy, pinto, and mung) from the perspective of a wheat miller to explore the extent to which pulse milling studies have addressed the objectives of wheat flour milling. These objectives are to reduce particle size (so as to facilitate ingredient miscibility), to separate components (so as to improve value and/or functionality), and to effect mechanochemical transformations (for example, to cause starch damage). Current international standards on pulse quality are examined from the perspective of their relationship to the millability of pulses (that is, grain legume properties at mill receival). The effect of pulse flour on the quality of the products they are incorporated in is examined solely from the perspective of flour quality not quantity. Finally, we identify research gaps where critical questions should be answered if pulse milling science and technology are to be established on par with their wheat flour milling counterparts.
1
Consistent, high-quality pulse flour ingredients depend on controlled milling, but pulse milling research remains substantially less developed than wheat flour milling research beyond dehulling.
2
International pulse quality standards are examined for their relevance to millability, linking grain properties at mill receival with milling performance.
3
Pulse ingredients are increasingly used in bakery, gluten-free, snack, pasta, and noodle products because of their protein- and fiber-rich nutritional profile.
4
The review evaluates chickpea, lentil, pea, and diverse bean milling from three wheat-milling objectives: particle-size reduction, component separation, and mechanochemical transformation such as starch damage.
5
The review identifies research gaps that must be addressed to establish pulse milling science and technology comparable to wheat flour milling.

Milling of pulse grains, including chickpea, lentil, pea, and bean, to produce pulse flour

The effects of pulse milling processes and grain properties on particle-size reduction, component separation, mechanochemical transformations, millability, and resulting flour quality

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2019-01-15
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Sunil Thakur
Martin G. Scanlon
Robert T. Tyler
Aidin Milani
Jitendra Paliwal
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