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首页> 外文期刊>LWT-Food Science & Technology >Novel edible composite films fabricated with whey protein isolate and zein: Preparation and physicochemical property evaluation
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Novel edible composite films fabricated with whey protein isolate and zein: Preparation and physicochemical property evaluation

机译:用乳清蛋白分离物和玉米蛋白制造的新型食用复合薄膜:制备和物理化学性质评估

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摘要

The present study developed a novel approach by using a common solvent to fabricate edible composite films made of whey protein isolate (WPI) and zein. Three types of spray-dried powder with WPI and zein at the ratios of 2:1, 1:1 and 1:2 (w/w, denoted as WPI/zein-2/1, WPI/zein-1/1 and WPI/zein-1/2, respectively) were obtained. With few exceptions, composite films were successfully prepared by using deionized water and 25%, 50%, 75% or 95% ethanol as film forming solvents for the spray-dried powders. Physicochemical properties including thickness, moisture content, color parameters, transparency, mechanical properties, heat sealing properties, and water solubility were determined. Solvent types did not significantly affect the moisture content of composite films. For all three types WPI/zein powder, lower water vapor permeability was detected in films prepared with 75% and 25% ethanol. Composite films prepared with deionized water showed higher transparency. Brightness and white index of films decreased as the ethanol concentration in film forming solution increased. Maximum elongation and break elongation of films increased as the WPI content increased, while higher ethanol concentration exerted lower elongation. All composite films could be heat-sealed and had good hot water solubility.
机译:本研究通过使用普通溶剂制造一种新的方法来制造由乳清蛋白分离物(WPI)和玉米蛋白制成的可食用复合膜。用WPI和玉米蛋白的三种类型的喷雾干燥粉末,比例为2:1,1:1和1:2(w / w,表示为WPI / Zein-2/1,WPI / Zein-1/1和WPI / ZEIN-1/2分别获得)。除了几种例外,通过使用去离子水和25%,50%,75%或95%乙醇作为喷雾干燥粉末的成膜溶剂成功制备复合膜。测定了物理化学性质,包括厚度,水分含量,颜色参数,透明度,机械性能,热密封性能和水溶性。溶剂类型没有显着影响复合膜的水分含量。对于所有三种类型的WPI / ZEIN粉末,在用75%和25%乙醇制备的薄膜中检测到较低的水蒸气渗透性。用去离子水制备的复合薄膜显示出更高的透明度。随着成膜溶液中的乙醇浓度增加,薄膜的亮度和白色指数降低。随着WPI含量的增加,薄膜的最大伸长率和断裂伸长率增加,而乙醇浓度较高施加较低的伸长率。所有复合薄膜均可热密封,具有良好的热水溶解度。

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