Effects of Roller Milling Parameters on Wheat-Flour Damaged Starch: A Comprehensive Passage Analysis and Response-Surface Methodology Optimization

Влияние параметров вальцового измельчения на содержание повреждённого крахмала в пшеничной муке: комплексный анализ технологических проходов и оптимизация методом поверхности отклика
Nemanja Bojanić, Dušan Rakić, Aleksandar Fišteš
2024-10-24

Box-Behnken designdamaged starchpassage analysisresponse surface methodologywheat flour milling
Damaged starch typically arises from mechanical damage caused by the action of the roller mills during the wheat flour milling process. The content of resulting damaged starch in the flour significantly influences its characteristics, emphasizing the importance of understanding and controlling the formation of damaged starch for the production of specialized flours. A detailed passage analysis from three different commercial mills revealed that starch damage control is primarily achievable at front passages of the sizing and reduction system, which generate the majority of the flour release in the mill. Also, it revealed that damaged starch content increases progressively from the initial to the final passages during milling in the break, sizing and reduction system. To investigate the effects of milling parameters on damaged starch, flour yield, and energy consumption, a three-level and three-variable Box-Behnken experimental design with response surface methodology was applied. As independent variables roll gap (0.05-0.35 mm), feed rate (0.15-0.35 kg/cm min), and fast roll speed (400-800 rpm) were employed. The obtained models were utilized to optimize milling conditions for producing flours with special characteristics.
1
A three-level, three-variable Box–Behnken response-surface design evaluated roll gap, feed rate, and fast-roll speed effects on starch damage, flour yield, and energy consumption.
2
Damaged starch content progressively increases from initial to final passages across the break, sizing, and reduction systems.
3
Starch damage is primarily controllable at the front sizing and reduction passages, which generate most of the mill’s flour release.
4
The investigated milling factors included roll gaps of 0.05–0.35 mm, feed rates of 0.15–0.35 kg/cm min, and fast-roll speeds of 400–800 rpm.
5
The study developed response-surface models to optimize milling conditions for producing flours with specialized characteristics.

Wheat flour produced by roller milling, including the break, sizing, and reduction passages

The effects of roll gap, feed rate, and fast roll speed on damaged-starch content, flour yield, and energy consumption, including their optimization for specialized flour production

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2024-10-24
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Nemanja Bojanić
Dušan Rakić
Aleksandar Fišteš
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