Cold plasma: A new technology to modify wheat flour functionality

Холодная плазма: новая технология модификации функциональных свойств пшеничной муки
Niloufar Bahrami, Danny L. Bayliss, Gemma A. Chope, Simon Penson, Tania Perehinec, Ian D. Fisk
2016-01-29

cold plasmadough strengthlipid oxidationprotein oxidationwheat flour functionality
Atmospheric pressure cold plasma has the potential to modify biological chemistry and modulate physical surface properties. Wheat flour was treated by low levels of cold plasma (air, 15V and 20V) for 60 or 120s. There was no change in the total aerobic bacterial count or total mould count as a result of treatment. Treatment did not impact the concentration of total non-starch lipids, or non-polar and glycolipids. However, treatment did reduce total free fatty acids and phospholipids and was dose dependent. Oxidation markers (hydroperoxide value and head space n-hexanal) increased with treatment time and voltage, which confirmed the acceleration of lipid oxidation. Total proteins were not significantly influenced by treatment although there was a trend towards higher molecular weight fractions which indicated protein oxidation and treated flour did produce a stronger dough. This study confirms the potential of cold plasma as a tool to modify flour functionality.
1
Atmospheric-pressure cold plasma treatment modified wheat flour functionality at low voltages of 15–20 V applied for 60–120 seconds.
2
Cold plasma did not change total aerobic bacterial or mould counts in treated wheat flour.
3
Hydroperoxide values and headspace n-hexanal increased with treatment voltage and duration, demonstrating accelerated lipid oxidation.
4
Total protein concentration remained unchanged, but higher-molecular-weight fractions and stronger dough indicated protein oxidation and improved dough strength.
5
Treatment reduced total free fatty acids and phospholipids in a voltage-dependent manner, while total non-starch lipids, non-polar lipids, and glycolipids were unaffected.

wheat flour treated with atmospheric-pressure cold plasma

cold-plasma-induced changes in flour functionality, including lipid oxidation, free fatty acids and phospholipids, protein oxidation, and dough strength

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2016-01-29
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Niloufar Bahrami
Danny L. Bayliss
Gemma A. Chope
Simon Penson
Tania Perehinec
Ian D. Fisk
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