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Effects of Molecular Weight and Guluronic Acid/Mannuronic Acid Ratio on the Rheological Behavior and Stabilizing Property of Sodium Alginate

机译:分子量和古洛糖醛酸/甘露糖醛酸比例对海藻酸钠流变行为和稳定性能的影响

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摘要

The aim of this study was to prepare sodium alginates (SAs) with different molecular weight and G/M ratio, and characterize their rheological behaviors and emulsifying properties. The result of Fourier transform infrared (FTIR) showed that the chemical bonds among the β- -mannuronic acid- (M-), α- -guluronic acid- (G-), and MG-sequential blocks in the SA chains were not changed significantly by acid treatment. Meanwhile, the molecular weight and G/M ratio of the SA exhibited drastic variation after acid modification. The result of rheological analysis suggesting that the apparent viscosity of SA reduced from 30 to 16.4 mPa.s with the increase of shear rate, reveals that SA solution belongs to pseudoplastic liquid. Also, the apparent viscosity of acid-modified SA solution dropped rapidly with the decrease of the molecular weight. The properties of emulsions stabilized by SA, SA-Ms, and commercial SAs were evaluated via the interface tensiometry and determination of the zeta potential, droplet size, creaming index (CI), and Turbiscan stability index (TSI). Compared with the SA-stabilized emulsion, the interfacial tension of the emulsion stabilized by SA-M increased with the decrease of the molecular weight reduced at the similar M/G ratio. The decrease in zeta potential and the increase in TSI of the emulsion were observed with the decrease of molecular weight, indicating that molecular weight plays an important role on the emulsifying ability of SA. In addition, the SA with low G/M ratio can form emulsions with stable and fine droplets.
机译:这项研究的目的是制备具有不同分子量和G / M比的藻酸钠(SAs),并表征其流变行为和乳化性能。傅里叶变换红外光谱(FTIR)的结果表明SA链中的β--甘露糖醛酸-(M-),α--古洛糖醛酸-(G-)和MG序列嵌段之间的化学键没有改变通过酸处理明显。同时,酸改性后,SA的分子量和G / M比显示出剧烈的变化。流变分析结果表明,随着剪切速率的增加,SA的表观粘度从30 mPa.s降低到16.4 mPa.s,表明SA溶液属于假塑性液体。而且,酸改性的SA溶液的表观粘度随着分子量的降低而迅速降低。通过界面张力测定法和确定ζ电势,液滴大小,乳化指数(CI)和Turbiscan稳定性指数(TSI)来评估由SA,SA-Ms和市售SA稳定的乳液的性能。与SA稳定的乳液相比,SA-M稳定的乳液的界面张力随着在M / G相似的情况下分子量的降低而增加。随着分子量的降低,乳液的zeta电位下降,TSI升高,表明分子量对SA的乳化能力起重要作用。此外,具有低G / M比的SA可以形成具有稳定细小液滴的乳液。

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