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盐酸酸溶对蒙脱石结构的影响
引用本文:钟山,孙世群,陈天虎,彭书传. 盐酸酸溶对蒙脱石结构的影响[J]. 硅酸盐学报, 2006, 34(9): 1162-1166
作者姓名:钟山  孙世群  陈天虎  彭书传
作者单位:合肥工业大学资源与环境工程学院,合肥,230009;合肥工业大学资源与环境工程学院,合肥,230009;合肥工业大学资源与环境工程学院,合肥,230009;合肥工业大学资源与环境工程学院,合肥,230009
摘    要:通过X射线衍射分析、Brunauer-Eammett-Teller法、透射电镜分析研究了盐酸酸溶对蒙脱石结构的影响.结果表明:随着蒙脱石酸溶程度增加,层间可交换阳离子与八面体中Al3 逐渐溶出,蒙脱石晶体逐渐被破坏,四面体片残留逐渐转变为无定型SiO2.酸溶产物比表面积先增加到144m2/g,然后减小,酸溶过程中没有大孔产生.H 置换晶层间阳离子和八面体中部分Al3 ,使微孔表面积增大,酸溶程度过高则使晶体骨架崩塌,微孔大幅度减少.中孔是蒙脱石颗粒堆垛形成,蒙脱石酸溶在某种程度上强化了蒙脱石晶片的剥片作用,增加了中孔表面积.

关 键 词:蒙脱石  比表面积  孔径分布
文章编号:0454-5648(2006)09-1162-05
收稿时间:2006-03-07
修稿时间:2006-05-15

INFLUENCE OF HYDROCHLORIC ACID-DISSOLUTION ON THE STRUCTURE OF MONTMORILLONITE
ZHONG Shan,SUN Shiqun,CHEN Tianhu,PENG Shuchuan. INFLUENCE OF HYDROCHLORIC ACID-DISSOLUTION ON THE STRUCTURE OF MONTMORILLONITE[J]. Journal of The Chinese Ceramic Society, 2006, 34(9): 1162-1166
Authors:ZHONG Shan  SUN Shiqun  CHEN Tianhu  PENG Shuchuan
Affiliation:School of Natural Resources and Environment Engineering, Hefei University of Technology, Hefei 230009, China
Abstract:The influences of hydrochloric acid-dissolution on the structure of montmorillonite were investigated with X-ray diffrac- tion, Brunauer-Emmett-Teller method and transmission electron microscopy. The results indicate that as the reaction time increases, the interbedded cations and octahedral cations first are dissolved, montmorillonite crystals are destroyed, tetrahedron remains and the products becomes amorphous fiber-like silica. The specific surface area of the acid-dissolved products increases to 144 m2/g and then decreases. Few macropores are formed in the whole process. The substitution of the interbedded cations and octahedral cations with H+ causes an increase in the micropore surface area; however, intensive acid dissolution can destroy the crystals, resulting in the de- crease of the micropore surface area. Mesopores are formed by the piling of montmorillonite slices. Acid dissolution intensifies the rupture of montmorillonite slices and leads to an increase in the mesopore surface area.
Keywords:montmorillonite   specific surface area   pore size distribution
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