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首页> 外文期刊>Journal of thermal analysis and calorimetry >Non-isothermal dehydration kinetic study of a new swollen biopolymer silver nanocomposite hydrogel
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Non-isothermal dehydration kinetic study of a new swollen biopolymer silver nanocomposite hydrogel

机译:一种新型溶胀的生物聚合物银纳米复合水凝胶的非等温脱水动力学研究

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摘要

Thermal dehydration kinetic of a novel swollen silver nanocomposite hydrogel (SNH), prepared based on poly(acrylic acid) grafted onto salep as a water soluble polysaccharide backbone, was studied by thermogravimetry under non-isothermal conditions. The values of apparent activation energies (E-a) and pre-exponential factors (A) for a set of reaction models at 5, 10, 15, and 20 K min(-1) heating rates were determined. The dependence of the activation energy on the extent of conversion was obtained by the model-free methods. Apparent activation energy (E-a) of the process was calculated from Kissinger-Akahira-Sunose and Tang isoconversional methods. From the strong dependence of the E-a value on the extent of conversion (alpha) for the investigated process, it was found that the dehydration process of SNH is complex and we cannot explain the whole process by a single mechanism. In the low extent of conversion (alpha), E-a rapidly decreases and the dehydration process is complex and probably involving a combination of several processes. In the range of alpha = 0.40-0.90, E-a is nearly constant and the dehydration process can be assumed to follow a single-step reaction. The results obtained from Criado and Invariant kinetic methods, in the constant-E-a region, confirmed that probable model for the dehydration process agreed with R3 model.
机译:在非等温条件下,通过热重分析法研究了一种新型的溶胀的银纳米复合水凝胶(SNH)的热脱水动力学,该水凝胶是基于接枝在salep上的聚(丙烯酸)作为水溶性多糖主链制备的。确定了在5、10、15和20 K min(-1)加热速率下的一组反应模型的表观活化能(E-a)和指数前因子(A)的值。通过无模型方法获得了活化能对转化程度的依赖性。根据Kissinger-Akahira-Sunose和Tang等转化方法计算了该过程的表观活化能(E-a)。从E-a值对所研究过程的转化程度(α)的强烈依赖性来看,发现SNH的脱水过程很复杂,我们无法用单一机制解释整个过程。在低转化率(α)下,E-a迅速降低,脱水过程很复杂,可能涉及多个过程的组合。在α= 0.40-0.90的范围内,E-a几乎恒定,可以假定脱水过程遵循一步反应。在恒定E-a区域中从Criado和不变动力学方法获得的结果证实,脱水过程的可能模型与R3模型一致。

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