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Fractal analysis of bentonite modified with heteropoly acid using nitrogen sorption and mercury intrusion porosimetry

机译:氮吸附和压汞法分析杂多酸改性膨润土的分形

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Experimental adsorption isotherms were used to evaluate the specific surface area and the surface fractal dimensions of acid-activated bentonite samples modified with a heteropoly acid (HPW). The aim of the investigations was to search for correlations between the specific surface area and the geometric heterogeneity, as characterized by the surface fractal dimension and the content of added acid. In addition, mercury intrusion was employed to evaluate the porous microstructures of these materials. The results from the Frankel-Halsey-Hill method showed that, in the p/p0 region from 0.75 to 0.96, surface fractal dimension increased with increasing content of heteropoly acid. The results from mercury intrusion porosimetry (MIP) data showed the generation of mesoporous structures with important topographical modifications, indicating an increase in the roughness (fractal geometry) of the surface of the solids as a consequence of the modification with the heteropoly acid. By comparison, MIP is preferable for the characterization because of its wide effective probing range.
机译:实验吸附等温线用于评估用杂多酸(HPW)改性的酸活化膨润土样品的比表面积和表面分形维数。研究的目的是寻找比表面积和几何异质性之间的相关性,其特征在于表面分形维数和添加酸的含量。另外,采用压汞法评估了这些材料的多孔微结构。 Frankel-Halsey-Hill方法的结果表明,在0.75至0.96的p / p0区域,表面分形维数随杂多酸含量的增加而增加。压汞法(MIP)数据的结果表明,具有重要形貌改变的介孔结构的生成,表明由于杂多酸的修饰,固体表面的粗糙度(分形几何形状)增加。相比之下,由于MIP的有效探测范围广,因此MIP在表征中更可取。

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