吸水率
麸皮
淀粉
结晶度
超声
肿胀 的
材料科学
抗性淀粉
食品科学
溶解度
化学工程
热稳定性
化学
复合材料
原材料
有机化学
色谱法
工程类
作者
Rūta Vaitkevičienė,Joana Bendoraitienė,Rimgailė Degutytė,Mantas Švažas,Daiva Žadeikė
出处
期刊:Polymers
[MDPI AG]
日期:2022-09-03
卷期号:14 (17): 3662-3662
被引量:3
标识
DOI:10.3390/polym14173662
摘要
In this study, the optimization of ultrasound (US) (850 kHz, 120 W) processing parameters (temperature, time, and power) for the enhanced production of resistant starch (RS) in rice bran (RB) matrixes was performed. The effect of US cavitation at different temperatures on the morphology, physicochemical properties, and mechanical performance of RS was evaluated. Ultrasonication at 40–70 °C temperatures affected the chemical structure, reduced the crystallinity of RS from 23.85% to between 18.37 and 4.43%, and increased the mechanical and thermal stability of RS pastes, indicating a higher tendency to retrograde. US treatment significantly (p < 0.05) improved the oil (OAC) and water (WAC) absorption capacities, swelling power (SP), solubility (WS), and reduced the least-gelation concentration (LGC). The mathematical evaluation of the data indicated a significant effect (p < 0.05) of the US parameters on the production of RS. The largest increment of RS (13.46 g/100 g dw) was achieved with US cavitation at 1.8 W/cm2 power, 40.2 °C temperature, and 18 min of processing time. The developed method and technology bring low-temperature US processing of rice milling waste to create a new sustainable food system based on modified rice bran biopolymers.
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