首页> 外文期刊>Food Science & Nutrition >Development of emulsion films based on bovine gelatin‐nano chitin‐nano ZnO for cake packaging
【24h】

Development of emulsion films based on bovine gelatin‐nano chitin‐nano ZnO for cake packaging

机译:基于牛明胶 - 纳米甲基纳米ZnO进行蛋糕包装的乳液膜的研制

获取原文
       

摘要

This research extends the effect of packaging with bovine gelatin, gelatin nanocomposite (GN), gelatin emulsion (GE), two layers gelatin nanocomposite and gelatin emulsion (GNE), and polyethylene (PE) films on sponge cake properties during storage at 25°C and 55?±?2% RH. In this regard, water vapor permeability (WVP) and oxygen permeability (OP) of films were compared. Then, moisture content, acidity, peroxide value, texture profile, organoleptic properties, and fungal growth of packed cakes were determined. Results showed that the addition of nanoparticles could reduce the water vapor permeability from 9.680?±?0.460?×?10–10 (g m/sm‐2Pa‐1) for net gelatin film to 6.067?±?0.337?×?10–10 (g?m/sm?2?Pa?1) for gelatin nanocomposite film and oxygen permeability from 39.262 (cm3μm/ m2dkPa) for net gelatin film to 29.645 (cm3μm?m?2 dkPa) for nanocomposite film. However, GNE films had the highest barrier properties. Results of acidity and peroxide values of cakes admitted the sufficiency of GNE films for sponge cakes packaging. In addition, antifungal properties of nanoparticles led to less fungal growth on cakes packed in GNE films. The cakes packed in GNE films own more organoleptic and texture acceptability than the ones packed in other films. Generally, according to the results GNE films are acceptable for packaging of sponge cakes which contain no preservative because this packaging can prevent fungal growth for a longer time and even more can maintain the cake chemical and organoleptic quality.
机译:该研究延伸了包装用牛明胶,明胶纳米复合材料(GN),明胶乳液(GE),两层明胶纳米复合材料和明胶乳液(GNE)的效果,以及在25℃下储存期间海绵饼特性的聚乙烯(PE)膜和55?±2%RH。在这方面,比较水蒸气渗透率(WVP)和膜的氧气渗透性(OP)。然后,确定了水分含量,酸度,过氧化物值,质地谱,填充蛋糕的填充蛋糕的感官特性和真菌生长。结果表明,纳米颗粒的加入可以将水蒸气渗透率从9.680Δ±0.460?×10-10(GM / SM-2Pa-1)降低到6.067°?0.337?×10-10 (g?m / sm?2?pa≤1)用于明胶纳米复合薄膜和从39.262(cm3μm/ m2dkpa)的氧渗透,用于纳米明胶薄膜为纳米复合膜的29.645(cm 3μm≤2dkpa)。然而,GNE薄膜具有最高的阻隔性能。蛋糕的酸度和过氧化物值的结果承认了对海绵蛋糕包装的GNE薄膜的充分性。此外,纳米颗粒的抗真菌性能导致在GNE薄膜上填充的蛋糕上的真菌生长更少。在GNE薄膜中包装的蛋糕比包装在其他薄膜中的更具感受者和质地的可接受性。通常,根据结果,GNE薄膜可接受用于包装海绵蛋糕,其含有不腐蚀性的,因为该包装可以预防真菌生长较长的时间,甚至更能保持蛋糕化学和感官质量。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号