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首页> 外文期刊>Starch: International Journal for the Investigation, Processing and Use of Carbohydrates and their Derivatives: Internationale Zeitschrift fur die Erforschung, Verarbeitung und Verwendung von Kohlenhydraten und deren Derivaten >Effect of structural characteristics of modified waxy corn starches on rheological properties, film-forming solutions, and on water vapor permeability, solubility, and opacity of films
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Effect of structural characteristics of modified waxy corn starches on rheological properties, film-forming solutions, and on water vapor permeability, solubility, and opacity of films

机译:改性蜡质玉米淀粉的结构特征对流变性能,成膜溶液以及对水蒸气渗透性,膜的溶解度和不透明度的影响

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摘要

Waxy corn starch (amylopectin) and three of its chemical derivatives: acetylated cross-linked (ACLS), oxidized (OS), and octenyl-succinylated (OSA), were used together with additives such as Tween 80, sorbitol, and beeswax suspension or safflower oilto test their effect on film-forming solutions (FFS) and films. The objectives of this study were the starch structure characterization, and its correlation with rheological properties of FFS and solubility, opacity, and water vapor permeability (WVP) ofthe produced films. Analysis of starch structure, rheological characterization, and films micrographs revealed that the starches contained predominantly low MW amylopectin molecules and film properties depended on their ability to reorganize. Additionally, the interaction among groups introduced in modified starches or with additive molecules can hinder or promote starch reorganization, resulting in films with increased or reduced WVP, solubility and transparency properties. Films were obtained by casting and showed a thickness less than 41 fxm. Films prepared with OS and beeswax exhibited the best reorganizing capacity of FFS, resulting in less soluble (30.0 ± 1.6%), highly transparent (23.2 ± 3.3 UA x nm) and less permeable films (0.485 ± 0.016 g- mm - m~(-2) - h~(-1) - kPa~(-1)). On the other hand, ACLS showed an opposite trend which was attributed to a more open film structure. These results contribute to understand the molecular interactions of waxy starch molecules in FFS which may be useful to design tailored coatings.
机译:蜡状玉米淀粉(支链淀粉)及其三种化学衍生物:乙酰化交联(ACLS),氧化的(OS)和辛烯基琥珀酰化的(OSA)与添加剂(例如Tween 80,山梨糖醇和蜂蜡悬浮液或红花油以测试其对成膜溶液(FFS)和薄膜的影响。这项研究的目的是对淀粉的结构进行表征,并将其与FFS的流变特性以及所制得的薄膜的溶解度,不透明度和水蒸气透过率(WVP)进行关联。淀粉结构,流变学特征和膜显微照片的分析表明,淀粉主要包含低分子量的支链淀粉分子,并且膜性质取决于其重组能力。另外,引入改性淀粉中的基团之间或与添加剂分子之间的相互作用可阻碍或促进淀粉的重组,从而导致膜的WVP,溶解度和透明性增加或降低。通过流延获得膜,其厚度小于41fxm。用OS和蜂蜡制备的薄膜表现出FFS的最佳重组能力,因此溶解度较低(30.0±1.6%),高度透明(23.2±3.3 UA x nm)和渗透性较低的薄膜(0.485±0.016 g-mm-m〜( -2)-h〜(-1)-kPa〜(-1))。另一方面,ACLS显示相反的趋势,这归因于更开放的膜结构。这些结果有助于理解FFS中蜡状淀粉分子的分子相互作用,这可能对设计定制的涂料有用。

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