Properties of Extrusion Processed Corn and Corn Coproducts
Author(s) -
Jordan J. Rich,
Kurt A. Rosentrater
Publication year - 2016
Publication title -
journal of food research
Language(s) - English
Resource type - Journals
eISSN - 1927-0895
pISSN - 1927-0887
DOI - 10.5539/jfr.v5n6p21
Subject(s) - extrusion , water content , bulk density , moisture , die swell , food science , pellets , raw material , corn starch , coproduct , starch , population , materials science , chemistry , pulp and paper industry , agronomy , environmental science , composite material , mathematics , biology , geotechnical engineering , organic chemistry , demography , sociology , soil science , pure mathematics , engineering , soil water
As the world population continues to grow, the demand for human food and animal feed grows exponentially. Aquaculture is the food sector which has been growing at the greatest rate for several years. Because of the expense of fishmeal in aquaculture fees, an inexpensive protein source could be corn-based proteins. Although many studies have focused on the effects of extruding corn-based blends along with other supplement ingredients, few studies have focused on the extrusion of individual corn-based ingredients. This study examined physical effects of extrusion on distillers dried grains with soluble (DDGS) and corn. Specific objectives included determining moisture content, water activity, color, unit density, durability, water stability, floatability, and bulk density for each corn-based extrudate. Blends were prepared with three levels of moisture (15, 25, and 35% db), and extrusion conditions included three screw speeds (50, 75, and 100 rpm) and three barrel temperatures (100, 125, and 150 ° C). Results showed that as the moisture content increased, the water activity increased in the raw ingredients, and the moisture content of the extrudates increased. As the screw speed increased, the bulk density decreased in the extrudates, and the mass flow rate increased. As the temperature increased, the floatability of the extrudates increased, while the bulk density decreased. The amount of protein and starch content in the corn products affected the physical quality of the pellets, which is important in aquaculture feed development.
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