淀粉
结晶度
化学改性
微粉化
化学工程
肿胀 的
溶解度
变性淀粉
表面改性
超声
材料科学
粘度
化学
高分子化学
有机化学
复合材料
粒径
工程类
作者
Zhuoting Wu,Dongling Qiao,Siming Zhao,Qinlu Lin,Binjia Zhang,Fengwei Xie
标识
DOI:10.1016/j.ijbiomac.2022.01.103
摘要
To tailor the properties and enhance the applicability of starch, various ways of starch modification have been practiced. Among them, physical modification methods (micronization, nonthermal plasma, high-pressure, ultrasonication, pulsed electric field, and γ-irradiation) are highly potential for starch modification considering its safety, environmentally friendliness, and cost-effectiveness, without generating chemical wastes. Thus, this article provides an overview of the recent advances in nonthermal physical modification of starch and summarizes the resulting changes in the multi-level structures and physicochemical properties. While the effect of these techniques highly depends on starch type and treatment condition, they generally lead to the destruction of starch granules, the degradation of molecules, decreases in crystallinity, gelatinization temperatures, and viscosity, increases in solubility and swelling power, and an increase or decrease in digestibility, to different extents. The advantages and shortcomings of these techniques in starch processing are compared, and the knowledge gap in this area is commented on.
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