Department of Food Science and Technology, Faculty of Agriculture, University of Zanjan, 45371-38791 Zanjan, Iran.
School of Packaging, Michigan State University, East Lansing, MI, USA.
Int J Biol Macromol. 2019 Mar 1;124:922-930. doi: 10.1016/j.ijbiomac.2018.11.241. Epub 2018 Nov 28.
In this study, the effect of UV-C light on starch-kefiran-ZnO (1%) primary solution in different exposure times (1, 6, and 12 h) was investigated. Starch-kefiran-ZnO (SKZ) solution was modified by UV irradiation in different time periods. Also, nano-ZnO (ZN) was used as a photo-initiator and reinforcement agent, simultaneously. Mechanical properties of the films were affected after the UV treatment. The tensile strength increased because of the enhanced interaction between the biopolymer mixture and nano filler but elongation at break was decreased. WVP decreased about 16% and dwindled to 2.08 × 10 g m s Pa. Water related properties (i.e. moisture content, moisture absorption, and solubility in water) of the films decreased by UV-C exposure. On the other hand, UV absorption and water contact angle increased because of the better distribution of the ZNs in polymer matrix after the UV exposure. Better compatibility of the ZNs and the biopolymer matrix after UV treatment was confirmed by the SEM micrographs. Comparison of FTIR spectra before and after UV exposure showed slight shifts. It was due to some formed or deformed bonds inside of the nanocomposite matrix. The modified SKZ by UV could be an appropriate process to sanitizing and food packaging concurrently. As well as UV can be used as a nano-ZnO compatibilizer in food packaging materials.
在这项研究中,研究了不同暴露时间(1、6 和 12 小时)下紫外线-C 光对淀粉-壳聚糖-ZnO(1%)初级溶液的影响。淀粉-壳聚糖-ZnO(SKZ)溶液通过不同时间段的紫外线照射进行改性。此外,纳米氧化锌(ZN)同时用作光引发剂和增强剂。紫外线处理后,薄膜的机械性能受到影响。由于生物聚合物混合物和纳米填料之间增强的相互作用,拉伸强度增加,但断裂伸长率降低。水蒸气透过率(WVP)降低了约 16%,降至 2.08×10-9g m s Pa。由于紫外线照射导致水相关性质(即水分含量、水分吸收和水中溶解度)降低,薄膜的水相关性质降低。另一方面,由于紫外线照射后 ZN 在聚合物基质中的分布更好,紫外线吸收和水接触角增加。SEM 显微照片证实了 ZN 和生物聚合物基质之间经过紫外线处理后的更好相容性。与紫外线照射前后的 FTIR 光谱比较显示出轻微的位移。这是由于纳米复合材料基质内部形成或变形的键所致。经过紫外线改性的 SKZ 可以同时进行消毒和食品包装。此外,紫外线可以用作食品包装材料中纳米 ZnO 的增容剂。