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Effect of storage condition on the physico-chemical properties of corn–wheat starch/zein edible bilayer films

机译:贮藏条件对玉米淀粉/玉米醇淀粉/玉米醇食用双层薄膜物理化学性质的影响

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The functional properties of biopolymer-based film packaging materials are susceptible to external storage conditions. The effects of different storage temperature, relative humidity (RH) and duration on the apparent form, barrier properties, mechanical properties and microstructure of corn–wheat starch/zein bilayer films were studied. From 0 to 150 days, storage temperature and RH, but not storage time, affected the appearance and colour of the bilayer films. The increase in haze of the bilayer films stored at 25°C was much greater than that at low temperatures. With increased storage time, the moisture content first increased and then decreased, while the water resistance and oxygen barrier properties of the bilayer films worsened. After 150 days, the bilayer film stored at 25°C with 54% RH had better water resistance properties. The oxygen barrier properties of the bilayer film stored at 25°C with 43% RH were preferable to those of other groups because the peroxide value of vegetable oil packed in the former bilayer film was the lowest. The tensile strength of bilayer films stored at 25°C with RH of 43, 54 and 65% decreased, but was still better than those stored at low temperatures (?17°C, 4°C), which were tough due to their high elongation at break. Scanning electron microscopy results showed tight bonds between the bilayer films, and the network structure inside the films disappeared and reappeared during storage. The cross-sectional compactness changed, and there was no film separation after 150 days.
机译:基于生物聚合物的薄膜包装材料的功能性易受外部储存条件的影响。研究了不同储存温度,相对湿度(RH)和持续时间对玉米淀粉/玉米醇膜的表观形式,阻隔性,机械性能和微观结构的影响。从0到150天,储存温度和RH,但不是储存时间,影响了双层胶片的外观和颜色。在25℃下储存的双层膜的雾霾的增加远大于低温下的薄膜。随着储存时间的增加,水分含量首先增加,然后减少,而双层膜的耐水性和氧气阻隔性变得恶化。在150天后,用54%RH储存在25℃的双层膜具有更好的耐水性。在25℃下储存在25℃的双层膜的氧气阻隔性优于其他基团的氧化物,因为在前双层膜中填充的植物油的过氧化物值是最低的。在25℃下储存的双层膜的拉伸强度为43,54和65%降低,但仍然比储存在低温下(α17℃,4°C)的那些,这仍然是由于它们的高温休息处的伸长率。扫描电子显微镜结果显示双层薄膜之间的紧密粘合,薄膜内部的网络结构消失并在储存期间重新拍摄。横截面紧凑性改变,150天后没有薄膜分离。

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