期刊文献+

热加工过程淀粉基膜材结构变化和增塑剂迁移研究

Structure Changes and Plasticizer Migration of Starch-based Films during Thermal Process
下载PDF
导出
摘要 [目的]研究不同加热方式下,淀粉基膜材的结构变化和增塑剂迁移情况,为新型淀粉基膜材在食品包装中的应用提供参考。[方法]以蒸馏水体系为热加工介质,采用沸水加热和微波加热,对淀粉基膜材进行热加工处理并分析加热过程中膜材表层增塑剂迁移、总迁移及膜材基体质量和结构变化。[结果]沸水加热和微波加热均加剧了淀粉基膜材表面增塑剂的迁移,淀粉高分子片段溶出,膜材内部产生高分子聚集,促使膜材总体迁移增大;当增塑剂含量较低时,2种热加工处理后的膜材断面形成了更加明显的孔洞结构。另外,相比于沸水加热,微波加热较高的瞬时功率促使膜材表层增塑剂迁移、总迁移程度更大。[结论]不同的热传递模式导致淀粉基膜材结构变化与分子迁移存在差异。 [ Objective ] To provide references for practical application of starch-based food packaging materials,migration behavior and structure changes were studied in starch-based films treated by thermal processing. [ Method] Boiling water,microwave and distilled water were chosen to be the heating method and food simulant system,respectively,modern technologies were prepared to investigate the migration of surface plasticizer,to- tal migration ,changes on the mass of matrix and morphology of fractured surface of starch-based films. [ Result] The results indicated that thermal processing promoted plasticizer migration of the surface layer, dissolution and aggregation of starch molecular accelerated the total migration. More- over, more pore structures were in the starch-based films with lower plasticizer content. Compared with boiling water treatment, plasticizer migra- tion and total migration were more severe by microwave. [ Conclusion] Based on the results above ,the structure changes and molecular migration in the starch-based film were diverse with two thermal deliveries.
出处 《安徽农业科学》 CAS 2017年第24期94-96,共3页 Journal of Anhui Agricultural Sciences
基金 2016年东莞理工学院省级大学生创新创业训练计划项目(201611819054)
关键词 淀粉基膜材 热加工 增塑剂迁移 结构变化 Starch-based film Thermal process Plasticizer migration Structure changes
  • 相关文献

参考文献1

二级参考文献14

  • 1皮林格,巴纳.食品用塑料包装材料-阻隔功能、传质、品质保证和立法[M].范家起,张玉霞,译.北京:化学工业出版社,2004.
  • 2Siracusa V, Rocculi P, Romani S, et al. Biodegradablepolymers for food packaging: a review [J]. Trends in FoodScience & Technology, 2008,19(12): 634-643.
  • 3Garcia M A, Martino M N, Zaritzky N E. Lipid addition toimprove barrier properties of edible starch-based films andcoatings [J]. Journal of Food Science, 2000, 65(6): 941-947.
  • 4Helmroth E,Rijk R, Dekker M, et al. Predictive modelling ofmigration from packaging materials into food products forregulatoiy purposes [J]. Trends in Food Science &Technology, 2002,13: 102-109.
  • 5BomfimM V J, ZamithHP S, Abrantes S MP. Migration ofe-caprolactam residues in packaging intended for contact withfatty foods [J]. Food Control, 2011,22: 681-684.
  • 6Muncke J. Endocrine disrupting chemicals and othersubstances of concern in food contact materials: An updatedreview of exposure, effect and risk assessment [J]. Journal ofSteroid Biochemistry and Molecular Biology, 2011, 127:118-127.
  • 7Fasano E, Bono-Blay F, Cirillo T, et al. Migration ofphthalates, alkylphenols, bisphenol A and di(2-ethylhexyl)adipate from food packaging [J]. Food Control, 2012,27:132-138.
  • 8Zhu J, Li X, Huang C, et al. Plasticization effect of triacetinon structure and properties of starch ester film [J].Carbohydrate Polymers, 2013, 94(2): 874-881.
  • 9Huang C,Zhu J, Li L, et al. Structural change and plasticizermigration of starch-based food packaging material contactingwith milk during microwave heating [J]. Food Control, 2014,36: 55-62.
  • 10Zygoura P D,Paleologos E K, Kontominas M G. Migrationlevels of PVC plasticisers: Effect of ionising radiationtreatment [J]. Food Chemistry, 2011,128: 106-113.

共引文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部