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NANOPOROS1TY CHARACTERISTICS OF SOME NATURAL CLAY MINERALS AND SOILS

机译:某些天然粘土矿物和土壤的纳米特性

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Limited information is available on microporosity in soils, A study was undertaken to investigate the micropore characteristics of four soil samples, with different particle-size distributions, and four natural silicate clay minerals. Specific surface area and the differential micropore-size distribution were taken into account to characterize the microstructure of the soils and clays. The micropore-size distributions showed a maximum contribution to the total microporosity by pores having an effective pore radius of ~ 20 A, thus indicating that thai category of pore contributes more than others to the total microporosity of the system. For both soils and clays a good exponential correlation was found between the maximum contribution to the microporosity and their specific surface area. A linear relationship was also found between the microporosity of the soils and their clay content. It has been concluded that the micropore system formed by 20 A pores is mainly located in the clay fraction of the soil, and contributes significantly to defining some of the most notable physicochemical properties of soils and clays.
机译:关于土壤中的微孔性的信息有限,因此进行了一项研究来研究四种具有不同粒径分布的土壤样品和四种天然硅酸盐粘土矿物的微孔特征。考虑了比表面积和微孔尺寸的差异分布,以表征土壤和粘土的微观结构。微孔尺寸分布显示有效孔隙半径约为20 A的孔隙对总微孔的贡献最大,因此表明该类别的孔隙对系统总微孔的贡献大于其他孔隙。对于土壤和粘土,在对微孔的最大贡献与其比表面积之间都发现了良好的指数相关性。还发现土壤的微孔性与其粘土含量之间存在线性关系。已经得出的结论是,由20 A的孔形成的微孔系统主要位于土壤的粘土部分,并显着有助于确定土壤和粘土的某些最显着的理化性质。

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