Reprint

Processing and Properties Analysis of Grain Foods

Edited by
April 2023
226 pages
  • ISBN978-3-0365-7066-2 (Hardback)
  • ISBN978-3-0365-7067-9 (PDF)

This book is a reprint of the Special Issue Processing and Properties Analysis of Grain Foods that was published in

Biology & Life Sciences
Chemistry & Materials Science
Computer Science & Mathematics
Engineering
Environmental & Earth Sciences
Summary

Foods derived from grains and grain-based ingredients represent a crucial source of energy and nutrients for humans. Cereals are conventional food materials, while interest is growing in the utilization of pseudocereals, pulses, oilseeds, and other grains to develop various foods and food ingredients. Grain and food processing converts raw grains into functional ingredients and creates palatable and nutritious end-products. During processing, various physical and chemical changes and interactions take place, affecting the nutritional, textural, sensory, and other quality properties of the products. Methods, protocols, and equipment have been developed to process, monitor, and control processing parameters to achieve the desired end-product quality or functionality. This reprint covers diverse topics related to grain-processing innovations and the effect of both conventional and innovative grain processes on the properties of grain-derived ingredients, intermediates, and end products.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
climate change; heat resource effectiveness; hourly accumulated temperature simulation; rice potential yield; whole foxtail millet flour; amylose content; japonica and glutinous; Chinese steamed bread; texture properties; northern cold area; maize seeds; physical characteristics; principal component analysis; cluster comprehensive analysis; wheat; flour; dough; mixing; hydrophobic interaction; aggregation; corn; hammermill; moisture content; particle size; gaseous chlorine dioxide; buckwheat-based composited flour; fresh buckwheat noodle; shelf-life and quality characteristics; whole grain bread; pulse; yellow pea; green pea; lentil; chickpea; Mixolab; dough rheology; bread texture; corn; hammermill; moisture content; particle size; ayocote bean; black bean; bread; protein digestibility; sensorial properties; pulses; yellow pea; red lentils; protein; roller milling; particle size; near infrared spectroscopy; sorghum; starch; amylose; amylopectin; high throughput phenotyping; genetic diversity; plant breeding; granular flow; particulate flow; extrusion; food powders; powder rheology; particle size; composition; corn; wheat; sugar; purple-colored wheat; wheat bran; particle size; blending ratio; fresh noodles; antioxidant properties; alternative sweeteners; sucrose; cookies; baking; sugar reduction; chickpea; kabuli; milling; de-hull; roller mill; n/a