Zr-exchanged and pillared beidellite: preparation and characterization by chemical analysis, XRD and Zr K EXAFS

J Miehé-Brendlé , L Khouchaf , J Baron , R Le Dred , M.-H Tuilier
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引用次数: 27

Abstract

Zirconia-pillared clays (with synthetic beidellite as host material) were prepared by replacing the sodium interlayer cations by zirconium hydroxy polycations, and then heating to stabilize the structure. The pillaring solution was an aqueous zirconyl chloride solution. The process was first optimized in order to decrease the volume of solution and the reaction time. From the XRD results, the interlayer spacing was found to be near 9 Å in Zr-exchanged beidellite and slightly lower (7 Å) after calcination. The B.E.T. surface area equals 174 m2 g−1. In order to follow the pillaring process, an EXAFS study at the Zr K edge was carried out on crystalline zirconyl oxychloride, the pillaring solution, ion-exchanged and pillared beidellite. There is no difference between the nearest and next-nearest-neighbour environments of Zr in solid zirconyl oxychloride and the pillaring solution. Furthermore, it is found that the Zr environment of the zirconyl polycation is preserved in the pillaring process. Although the mean Zr–O and Zr–Zr distances are shortened from 2.21 and 3.59 Å, respectively, in exchanged beidellite to 2.17 and 3.38 Å, respectively, in the calcined material, the nearly square frame of the Zr4 zirconyl units is also preserved after the calcination process. The results are consistent with the intercalation of zirconyl pillars made of isolated zirconyl polycations normal to the (001) planes of the beidellite layers. From the charge deduced from chemical analysis, one polycation cancels the charge of four unit cells of the beidellite.

锆交换柱状贝德尔石的制备及其化学分析、XRD和Zr K EXAFS表征
以合成贝德尔石为主体材料,采用氧化锆羟基聚阳离子取代层间钠阳离子,然后加热稳定结构制备氧化锆柱状粘土。柱化溶液为氯化锆水溶液。首先对工艺进行了优化,以减少溶液的体积和反应时间。XRD结果表明,锆交换贝德尔石的层间间距接近9 Å,煅烧后的层间间距略小(7 Å)。B.E.T.的表面积等于174 m2 g−1。为了跟踪柱化过程,在Zr - K边缘对结晶氧化锆、柱化溶液、离子交换和柱化贝德尔石进行了EXAFS研究。固体氧化锆溶液中Zr的最近和次近邻环境与柱状溶液中Zr的最近和次近邻环境没有区别。此外,柱化过程中还保留了锆基多阳离子的Zr环境。虽然交换贝德尔石中Zr-O和Zr-Zr的平均距离分别从2.21和3.59 Å缩短到煅烧材料中分别为2.17和3.38 Å,但焙烧过程后Zr4锆基单元的近方形框架也得到了保留。该结果与锆石柱的插层一致,这些柱是由垂直于贝德尔晶体(001)平面的分离的锆石多阳离子构成的。从化学分析推导出的电荷来看,一个多阳离子抵消了贝德尔卫星的四个单位细胞的电荷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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