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首页> 外文期刊>Journal of thermal analysis and calorimetry >Investigation of structure and thermal stability of surfactant-modified Al-pillared montmorillonite
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Investigation of structure and thermal stability of surfactant-modified Al-pillared montmorillonite

机译:表面活性剂改性铝柱撑蒙脱土的结构和热稳定性研究

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摘要

For combining the properties of organoclays and pillared clays, inorganic–organic clays have attracted much attention in recent years. In this study, Al Keggin cation pillared montmorillonites (Al-Mts) were first prepared and parts of Al-Mts were calcined at different temperatures (C-Al-Mts). The inorganic–organic montmorillonites were synthesized by intercalating Al-Mts and C-Al-Mts with the cationic surfactant, hexadecyltrimethyl ammonium bromide (HDTMAB). The products were characterized by X-ray diffraction, X-ray fluorescence, and simultaneous thermogravimetric analysis. For HDTMAB-modified uncalcined Al Keggin cation pillared montmorillonites (H-Al-Mts), the basal spacing increased with the increment of surfactant loading level, but the Al content of H-Al-Mts decreased simultaneously, indicating that the intercalated surfactant replaced some Al Keggin cations in the interlayer space. However, in the case of C-Al-Mts, the interlayer spaces could not be further expanded after surfactant modification, implying that the neighboring montmorillonite layers were ‘‘locked’’ by the aluminum pillars which were formed by dehydroxylation of Al Keggin cation pillars during thermal treatment. The thermal stability of HDTMAB-modified C-Al-Mts (H-C-Al-Mts) was much better than that of H-Al- Mts. The major mass loss of H-C-Al-Mts occurred at ca. 410 ℃, corresponding to decomposition of intercalated surfactant cations. In contrast, H-Al-Mts displayed two mass loss temperatures at ca. 270 and 410 ℃, corresponding to the evaporation of surfactant molecules and the decomposition of surfactant cations in the interlayer space, respectively.
机译:结合有机粘土和带柱粘土的特性,无机-有机粘土近年来引起了极大的关注。在这项研究中,首先制备了Al Keggin阳离子柱撑蒙脱石(Al-Mts),然后在不同温度(C-Al-Mts)下煅烧部分Al-Mts。无机-有机蒙脱土是通过将Al-Mts和C-Al-Mts与阳离子表面活性剂十六烷基三甲基溴化铵(HDTMAB)嵌入而合成的。通过X射线衍射,X射线荧光和同时热重分析对产物进行表征。对于HDTMAB改性的未煅烧的Al Keggin阳离子柱撑蒙脱土(H-Al-Mts),基面间距随表面活性剂负载量的增加而增加,但H-Al-Mts的Al含量同时下降,表明插层表面活性剂替代了一些层间空间中的Al Keggin阳离子。但是,对于C-Al-Mts,在表面活性剂改性后,层间空间无法进一步扩大,这意味着相邻的蒙脱土层被Al Keggin阳离子柱的脱羟基作用形成的铝柱“锁定”在热处理过程中。 HDTMAB改性的C-Al-Mts(H-C-Al-Mts)的热稳定性比H-Al-Mts的热稳定性好得多。 H-C-Al-Mts的主要质量损失发生在大约410℃时,相应的嵌入的表面活性剂阳离子分解。相比之下,H-Al-Mts在大约2℃处显示两个质量损失温度。 270和410℃分别对应于表面活性剂分子的蒸发和层间空间中表面活性剂阳离子的分解。

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