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Characterization of compression molded sodium caseinate-based film.

机译:压铸酪蛋白酸钠基薄膜的表征。

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摘要

The objective of this research was to characterize compression molded sodium caseinate based films and investigate the effect of water and glycerol ratios on thermal transition and heal sealing properties. Studies were conducted on films from three variations of film-forming mixtures or "resins", derived from US patent 4,076,846 containing sodium caseinate (NaCas), methylcellulose (MC), calcium chloride (CaCl2), glycerol (Gly), and distilled water.Moisture sorption isotherms were used to evaluate the water-protein and water-glycerol interactions in the resins. Sorption isotherms were characteristic of most biopolymer material and showed increasing moisture sorption with increasing amounts of glycerol. In compression molded films containing &ge29% glycerol, visible opaque specks of unincorporated matter were attributed to the high water binding property of glycerol and its interaction with the NaCas, which prevented the NaCas from being able to fully solubilize.Thermal analysis by DSC and TMA showed that all films were amorphous and that water and glycerol were equally effective at lowering Tg within the different water: glycerol ratios that were tested. While water and glycerol were equally effective at lowering Tg, they affected the strength properties and heat seal strengths of the film in different ways. Increasing amounts of glycerol decreased heat seal strengths (maximum load force/width) at higher seal temperatures (195°F) because it interacted with the protein chains, increasing mobility and elongation of the film under tensile stress and interfering with protein entanglements at the seal interface. Less glycerol increased stiffness causing increased film strength and seals with higher breaking stress.
机译:这项研究的目的是表征压塑酪蛋白酸钠基薄膜,并研究水和甘油比例对热转变和愈合密封性能的影响。对来自三种不同成膜混合物或“树脂”的薄膜进行了研究,这些薄膜或混合物来自美国专利4,076,846,其中含有酪蛋白酸钠(NaCas),甲基纤维素(MC),氯化钙(CaCl2),甘油(Gly)和蒸馏水。水分吸附等温线用于评估树脂中的水-蛋白质和水-甘油相互作用。吸附等温线是大多数生物聚合物材料的特征,并且显示出随着甘油含量的增加而增加的水分吸收。 DSC和TMA的热分析表明,在含≥29%甘油的压模薄膜中,可见的不掺入物质的不透明斑点是甘油的高水分结合特性及其与NaCas的相互作用所致,阻止了NaCas完全溶解。所有膜都是无定形的,并且水和甘油在测试的不同水:甘油比率内在降低Tg方面同样有效。尽管水和甘油在降低Tg方面同样有效,但它们以不同的方式影响薄膜的强度性能和热封强度。甘油的增加会降低在较高密封温度(195°F)下的热封强度(最大负载力/宽度),因为它与蛋白质链相互作用,在拉伸应力下增加了薄膜的迁移率和伸长率,并干扰了蛋白质在密封界面处的缠结。较少的甘油增加了刚度,从而增加了膜的强度,并在较高的断裂应力下实现了密封。

著录项

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Packaging.Sustainability.
  • 学位 M.S.
  • 年度 2010
  • 页码 79 p.
  • 总页数 79
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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