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中国精品科技期刊2020
刘娅杰, 章建浩, 李佳伶, 黄亭亭, 刘瑶, 李璨. 纳米TiO2与SiO2改性PVA基复合涂膜研究[J]. 食品工业科技, 2014, (21): 278-281. DOI: 10.13386/j.issn1002-0306.2014.21.051
引用本文: 刘娅杰, 章建浩, 李佳伶, 黄亭亭, 刘瑶, 李璨. 纳米TiO2与SiO2改性PVA基复合涂膜研究[J]. 食品工业科技, 2014, (21): 278-281. DOI: 10.13386/j.issn1002-0306.2014.21.051
LIU Ya- jie, ZHANG Jian- hao, LI Jia-ling, HUANG Ting-ting, LIU Yao, LI Can. The research of Nano- Ti O2 and Nano- SiO2 modification on PVA matrix composites packaging materials[J]. Science and Technology of Food Industry, 2014, (21): 278-281. DOI: 10.13386/j.issn1002-0306.2014.21.051
Citation: LIU Ya- jie, ZHANG Jian- hao, LI Jia-ling, HUANG Ting-ting, LIU Yao, LI Can. The research of Nano- Ti O2 and Nano- SiO2 modification on PVA matrix composites packaging materials[J]. Science and Technology of Food Industry, 2014, (21): 278-281. DOI: 10.13386/j.issn1002-0306.2014.21.051

纳米TiO2与SiO2改性PVA基复合涂膜研究

The research of Nano- Ti O2 and Nano- SiO2 modification on PVA matrix composites packaging materials

  • 摘要: 为有效提高聚乙烯醇(PVA)的成膜阻湿与抑菌性能,在PVA基膜材料中添加纳米Si O2、Ti O2及TAIC(异氰脲酸三烯丙酯),利用响应曲面实验方法研究纳米Si O2、Ti O2对PVA基涂膜包装材料成膜透湿性能的影响及交互作用。结果表明:纳米Si O2、Ti O2与TAIC对成膜透湿率有显著的交互作用,随TAIC添加量的增加,涂膜材料成膜阻湿抑菌性能随着纳米Si O2和纳米Ti O2比例的适当增大而提高。回归优化的最优组,纳米Si O2添加量0.04g/100m L,纳米Ti O2添加量0.05g/100m L,TAIC添加量2.42g/100m L时透湿率最低,成膜透湿率比对照降低48.09%(p<0.05),在光催化条件下,抑菌性能比对照提高62.39%。 

     

    Abstract: In order to improve the bacteriostasis and resistance wet performance of PVA matrix composites packaging materials, PVA solution was used as the matrix, nano- Si O2, nano-Ti O2 and TAIC were added to modify it.To investigate the influence of nano- Si O2 and nano- Ti O2 on the bacteriostasis and resistance wet performance of PVA matrix composite packaging materials, a response surface experiment was used.The results showed that there was a significant interaction of TAIC and nano- Si O2, nano-Ti O2 on the resistance wet performance of PVA matrix composites packaging materials, the bacteriostasis and resistance wet performance of PVA matrix composites packaging materials was increased with the appropriate increase of the addition of nano- Si O2 and nano- Ti O2, with the increase of the addition of TAIC.The optimum conditions were nano-Si O20.04 g /100 m L, nanoTi O20.05 g /100 m L, TAIC 2.42 g /100 m L. The water vapor transmission rate ( WVTR) of the optimal group film was reduced by 48.09% ( p < 0.05) than the film without nano- materials.The bacteriostasis of the optimal group film that added nano- Si O2 and nano- Ti O2 was increased by 62.39% than the film without nano- materials, under the UV photocatalytic conditions.

     

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