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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Evaluation of microporosity, pore tortuosity, and connectivity of montmorillonite solids pillared with LaNiOx binary oxide. A combined application of the CPSM model, the alpha(s)-plot method and a pore percolation-connectivity model
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Evaluation of microporosity, pore tortuosity, and connectivity of montmorillonite solids pillared with LaNiOx binary oxide. A combined application of the CPSM model, the alpha(s)-plot method and a pore percolation-connectivity model

机译:评估以LaNiOx二元氧化物为柱基的蒙脱石固体的微孔,曲折度和连通性。 CPSM模型,alpha-s-plot方法和毛孔渗流-连通性模型的组合应用

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The present work deals with the comparative application of the CPSM (corrugated pore structure model), the a. plot and the pore connectivity methods for pore structure analysis and especially the detection of microporosity of a category of montmorillonite clays pillared with LaNiOx. binary oxide. A quite good agreement between the corresponding results deduced from the three methods was confirmed. The raising of the LaNiOx content caused a change of pore volume, surface area, and microporosity whereas the relevant curves pass through a maximum. The CPSM model, through the simulation of gas sorption hysteresis, enables the evaluation of unified mesomicropore size distributions, pore surface areas, tortuosity factors, tau(CPSM), and relative microporosities. It is also concluded that pore tortuosity, (tau(CPSM)), is inversely proportional to the pore connectivity factor (c), and the nominal pore length (N-s) (i.e., a CPSM parameter) is proportional to the number of pore lengths (L) (i.e., a parameter of the pore connectivity model). [References: 35]
机译:本工作涉及CPSM(波纹孔结构模型)的比较应用。图和孔隙连通性方法,用于孔隙结构分析,尤其是检测以LaNiOx柱撑的一类蒙脱石粘土的微孔率。二元氧化物。三种方法推导的相应结果之间的一致性很好。 LaNiOx含量的增加引起孔体积,表面积和微孔率的变化,而相关曲线则通过最大值。通过模拟气体吸附滞后,CPSM模型可以评估统一的中微孔尺寸分布,孔表面积,曲折因子,tau(CPSM)和相对微孔率。还得出结论,孔曲折度(tau(CPSM))与孔连通度(c)成反比,标称孔长(Ns)(即CPSM参数)与孔数成正比(L)(即,孔连通性模型的参数)。 [参考:35]

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