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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Modeling of vapor sorption in glassy polymers using a new dual mode sorption model based on multilayer sorption theory
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Modeling of vapor sorption in glassy polymers using a new dual mode sorption model based on multilayer sorption theory

机译:基于多层吸附理论的新型双模吸附模型对玻璃态聚合物中的蒸汽吸附进行建模

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Conventional dual mode sorption (CDMS) model is one of the most effective models in describing vapor sorption isotherms with a concave towards the activity axis in glassy polymers, while engaged species induced clustering (ENSIC) model has been approved to be highly successful in modeling vapor sorption isotherms in polymers with a convex to the activity axis (BET type III) over a wide range. However, neither of them is effective to describe other types of vapor sorption isotherms, especially sigmoidal isotherms. The Guggenheim–Anderson–de Boer (GAB) model fits extremely well with sigmoidal isotherms such as some vapor especially water vapor sorption data in food and related natural materials. However, one assumption of the GAB model for vapor sorption in glassy polymers is inconsistent with the fact that there are two species of sorption sites as the CDMS model assumes. Based on multilayer sorption theory on which the Guggenheim–Anderson–de Boer (GAB) model is based, a new dual mode sorption (DMS) model for vapor sorption in the glassy polymers is deduced. The mathematical meanings and the physicochemical significances of the parameters in the new model are analyzed. The new model has been verified experimentally by some special cases. Comparisons of the new DMS model with the CDMS and the ENSIC models prove that only the new model fits extremely well with all types of vapor sorption isotherms in the glassy polymers
机译:常规双模式吸附(CDMS)模型是描述玻璃态聚合物中具有朝向活性轴凹入的蒸汽吸附等温线的最有效模型之一,而结合物种诱导聚类(ENSIC)模型已被批准在对蒸汽进行建模方面非常成功在宽范围内具有对活性轴呈凸形的聚合物(III型BET)中的吸附等温线。但是,它们都不能有效地描述其他类型的蒸气吸附等温线,尤其是S型等温线。 Guggenheim-Anderson-de Boer(GAB)模型非常适合于S型等温线,例如食品和相关天然材料中的一些蒸汽,尤其是水蒸汽的吸附数据。但是,对于玻璃态聚合物中蒸气吸附的GAB模型的一种假设与CDMS模型所假设的存在两种吸附位点的事实不一致。基于Guggenheim-Anderson-de Boer(GAB)模型所基于的多层吸附理论,推导了用于玻璃态聚合物中蒸汽吸附的新的双模式吸附(DMS)模型。分析了新模型中参数的数学含义和理化意义。新模型已经通过一些特殊情况进行了实验验证。新的DMS模型与CDMS和ENSIC模型的比较证明,只有新模型才能很好地适应玻璃状聚合物中所有类型的蒸气吸附等温线。

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