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A DSC and NMR-relaxation study of the molecular mobility of water protons interacting with chemically modified starches

机译:水质子与化学改性淀粉的分子迁移率的DSC和NMR松弛研究

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Changes in the mobility of water protons in the chemically modified starches (CMS)-water system are studied by differential scanning calorimetry and NMR relaxation. The amounts of unfrozen water at negative temperatures and additional (after gelation) unfrozen for CMS are lower than those for native starch. The proton spin-spin relaxation time T (2) for CMS samples, conventionally attributed to the water fraction in starch granules, decreases monotonically with increasing temperature, whereas for native starch, this dependence exhibits an extreme behavior. Studying the dispersion dependences for 7 wt % gels, which characterize the rate of chemical exchange of water protons with protons of hydroxyl groups of polysaccharides, showed the absence of this kind of dependence for the CMS studied when the instrument operated at a frequency of 20 MHz. This data indicate the significant destructive changes in the structure of the CMS.
机译:通过差示扫描量热法和NMR弛豫研究了化学改性淀粉(CMS)-WATE系统中水质子迁移率的变化。 对于CMS的负面温度和附加(凝胶化后)的未冷却水的量低于原生淀粉。 用于CMS样品的质子旋转旋转时间T(2)通常归因于淀粉颗粒中的水分,随着温度的增加而单调,而对于天然淀粉,这种依赖性表现出极端的行为。 研究7wt%凝胶的分散依赖性,其表征水质子的化学交换率与多糖的质子,表明当仪器在20MHz的频率下操作时,对所研究的CMS的不存在。 。 该数据表明CMS结构中的重大破坏性变化。

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