结晶度
淀粉
介质阻挡放电
直链淀粉
材料科学
化学
食品科学
电介质
复合材料
光电子学
作者
Shanshan Gao,Haiyan Zhang,Jianfei Pei,Huan Liu,Mei Lü,Jiayi Chen,Min Wang
标识
DOI:10.1016/j.ijbiomac.2022.05.171
摘要
To systematically explore the effects of high-voltage and short-time (HV-ST) dielectric barrier discharge (DBD) plasma treatment on Tartary buckwheat starch (TBS), TBS was treated at 15 and 20 kV for 20 and 40 s. Compared to native starch, more corrosions and holes were observed on the surfaces of plasma-modified TBS observed by SEM. Increased crystallinity and short-range structure order in plasma-modified TBS were determined using XRD and FT-IR respectively, while the average chain length and amylose content decreased, with lowest values (13.5 and 6.9%) in sample 20-40. Meanwhile, the solubility and paste clarity of plasma-modified TBS increased, whereas the viscosities decreased, enhancing in vitro digestibility with highest value (79.5%) in sample 20-40. These changes of TBS properties positively correlated with the treatment voltage and time length. Therefore, HV-ST DBD plasma treatment served as an effective tool for altering the properties of TBS. It is favorable for the applications of starch ingredients with low viscosity and high paste clarity, as well as accelerating starch hydrolyzation processes, such as brewing and food fermentation.
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