首页> 外文会议>Proceedings of the Twenty-Sixth Conference of the North American Thermal Analysis Society September 13-15, 1998 Cleveland, Ohio >Glass transition temperatures determined via temperature-fluctuating differential scanning calorimetry
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Glass transition temperatures determined via temperature-fluctuating differential scanning calorimetry

机译:通过温度波动差示扫描量热法确定的玻璃化转变温度

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The determination of the glass transition temperature (T_g) has become important due to its ability to explain physical changes that occur in foods. However, the T_g may be hidden by other thermal events occurring simultaneously. Temperature-fluctuating DSC, where the temperature cycles while the net temperature increases at a constant rate, is supposed to separate reversible thermal phenomena (e.g., T_g) from irreversible thermal phenomena. Using temperature-fluctuating DSC, the T_g was successfully separated from irreversible thermal phenomena in simple food ingredients. While the glass transition of more complex food systems at low moisture contents was difficult to detect, glass transitions were observed for solutions and food systems at higher moisture contents. Reversible glass transitions were differentiated from other irreversible endothermic baseline shifts, which could be mistaken for the T_g. Temperature-fluctuating DSC is useful for food scientists who need to determine T_g values. However, experience has indicated that temperature-fluctuating DSC is not a replacement for standard DSC or other types of thermal analyzers, but should be used as a complimentary method.
机译:玻璃化转变温度(T_g)的确定因其能够解释食品中发生的物理变化而变得很重要。然而,T_g可能被同时发生的其他热事件所掩盖。温度波动的DSC,其中温度在净温度以恒定速率增加的同时循环,因此应该将可逆热现象(例如,T_g)与不可逆热现象分开。使用温度波动DSC,成功将T_g与简单食品成分中的不可逆热现象成功分离。尽管很难检测到水分含量较低的较复杂食品系统的玻璃化转变,但观察到水分含量较高的溶液和食品系统的玻璃化转变。可逆的玻璃化转变与其他不可逆的吸热基线转变有所区别,这可能被误认为是T_g。温度波动DSC对于需要确定T_g值的食品科学家很有用。但是,经验表明,温度波动DSC不能代替标准DSC或其他类型的热分析仪,而应作为一种补充方法。

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