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Analysis of Adsorption Data of Nitrogen and Carbon Dioxide on Chemically-activated Carbons from Cherry and Wild Cherry Stones by Considering Different Approaches Based on Different Models

机译:基于不同模型的不同方法对樱桃和野樱桃石化学活化碳上氮和二氧化碳吸附数据的分析

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Activated carbons were prepared by activation of cherry and wild cherry stones with phosphoric acid and zinc chloride. The adsorption of nitrogen at -196 ℃ and of carbon dioxide at 0 ℃ was followed and the data obtained analyzed through the use of models based on theories of surface coverage and micropore filling. Chemically-activated carbons obtained from cherry and wild cherry stones exhibited high surface areas and large total pore volumes. Most of the pores lay in the micropore region while a small fraction of the total surface areas was located in non-micropores. Fair agreement was established on comparing the textural parameters derived from models based on the theory of surface coverage with those derived from the micropore filling theory. Micropores should be classified into ultrafine pores, micropores and super-micropores, such sub-division helping in the prediction of the adsorption behaviour and in the interpretation of the data derived therefrom.
机译:通过用磷酸和氯化锌活化樱桃和野樱桃石来制备活性炭。跟踪了-196℃下氮气和0℃下二氧化碳的吸附,并基于表面覆盖和微孔填充理论,通过使用模型对所得数据进行了分析。从樱桃和野樱桃石中获得的化学活化碳具有较高的表面积和较大的总孔体积。大多数孔位于微孔区域,而总表面积的一小部分位于非微孔中。通过比较基于表面覆盖理论的模型和微孔填充理论的纹理参数,建立了公平的共识。微孔应分为超细孔,微孔和超微孔,这种细分有助于预测吸附行为并解释由其衍生的数据。

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