首页> 外文期刊>Journal of Agricultural and Food Chemistry >Solution and film properties of sodium caseinate/glycerol and sodium caseinate/polyethylene glycol edible coating systems.
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Solution and film properties of sodium caseinate/glycerol and sodium caseinate/polyethylene glycol edible coating systems.

机译:酪蛋白酸钠/甘油和酪蛋白酸钠/聚乙二醇食用涂料体系的溶液和薄膜性能。

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摘要

The aim of this study is to determine the effects of plasticizer hydrogen bonding capability and chain length on the molecular structure of sodium caseinate (NaCAS), in NaCAS/glycerol and NaCAS/polyethylene glycol 400 (PEG) systems. Both solution and film phases were investigated. Glycerol and PEG reduced the viscosity of aqueous NaCAS, with the latter having a greater effect. This was explained in terms of protein/plasticizer aggregate size and changes to the conformation of the caseinate chain. In the film phase, glycerol caused more pronounced changes to the film tensile strength compared with PEG. However, the effect of glycerol on film water vapor permeability was smaller. These observations are attributed to the differences in plasticizer size and hydrogen bonding strength that controls the protein-plasticizer and protein-protein interactions in the films. Glass transition calculations from the tensile strength data indicate that the distribution of bonding interactions is more homogeneous in NaCAS/PEG films than in NaCAS/glycerol films.
机译:这项研究的目的是确定在NaCAS /甘油和NaCAS /聚乙二醇400(PEG)系统中增塑剂氢键能力和链长对酪蛋白酸钠(NaCAS)分子结构的影响。研究了溶液相和膜相。甘油和PEG降低了NaCAS水溶液的粘度,后者的作用更大。这是根据蛋白质/增塑剂聚集体大小和酪蛋白酸盐链构象的变化来解释的。在膜相中,与PEG相比,甘油引起的膜抗张强度变化更为明显。然而,甘油对薄膜水蒸气渗透性的影响较小。这些观察结果归因于增塑剂尺寸和氢键强度的差异,该差异控制了膜中蛋白质-增塑剂和蛋白质-蛋白质的相互作用。由拉伸强度数据计算的玻璃化转变表明,在NaCAS / PEG膜中,键合相互作用的分布比在NaCAS /甘油膜中更均匀。

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