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通过脱硅作用在MFI沸石中形成分级孔隙率的机制:铝作为孔导向剂的作用。

Mechanism of hierarchical porosity development in MFI zeolites by desilication: the role of aluminium as a pore-directing agent.

作者信息

Groen Johan C, Peffer Louk A A, Moulijn Jacob A, Pérez-Ramírez Javier

机构信息

DelftChemTech, Delft University of Technology, Julianalaan 136, 2628 BL Delft, The Netherlands.

出版信息

Chemistry. 2005 Aug 19;11(17):4983-94. doi: 10.1002/chem.200500045.

DOI:10.1002/chem.200500045
PMID:15968702
Abstract

The role of the concentration and the nature of aluminium in the creation of hierarchical porosity in both commercial and synthesized MFI zeolites have been investigated through controlled mesoporosity development by desilication in alkaline medium. Framework aluminium controls the process of framework silicon extraction and makes desilication selective towards intracrystalline mesopore formation. An optimal molar Si/Al ratio in the range 25-50 has been identified; this leads to an optimal mesoporosity centred around 10 nm and mesopore surface areas of up to 235 m(2) g(-1) while preserving the intrinsic crystalline and acidic properties. At lower framework Si/Al ratios the relatively high Al content inhibits Si extraction and hardly any mesopores are created, while in highly siliceous ZSM-5 unselective extraction of framework Si induces formation of large pores. The existence of framework Al sites in different T positions that are more or less susceptible to the alkaline treatment, and the occurrence of re-alumination, are tentative explanations for the remarkable behaviour of Al in the desilication process. The presence of substantial extra framework Al, obtained by steam treatment, inhibits Si extraction and related mesopore formation; this is attributed to re-alumination of the extraframework Al species during the alkaline treatment. Removal of extraframework Al species by mild oxalic acid treatment restores susceptibility to desilication, which is accompanied by formation of larger mesopores due to the enhanced Si/Al ratio in the acid-treated zeolite.

摘要

通过在碱性介质中脱硅来控制介孔结构的发展,研究了铝的浓度和性质在商业和合成MFI沸石中形成分级孔隙率方面的作用。骨架铝控制着骨架硅的提取过程,并使脱硅对晶内介孔的形成具有选择性。已确定最佳摩尔Si/Al比在25-50范围内;这导致以10 nm左右为中心的最佳介孔率和高达235 m² g⁻¹的介孔表面积,同时保留了固有的晶体和酸性性质。在较低的骨架Si/Al比下,相对较高的Al含量会抑制Si的提取,几乎不会产生任何介孔,而在高硅ZSM-5中,骨架Si的非选择性提取会诱导大孔的形成。不同T位的骨架Al位点对碱处理的敏感性或多或少,以及再铝化的发生,是对Al在脱硅过程中显著行为的初步解释。通过蒸汽处理获得的大量骨架外Al的存在会抑制Si的提取和相关介孔的形成;这归因于在碱处理过程中骨架外Al物种的再铝化。通过温和的草酸处理去除骨架外Al物种可恢复对脱硅的敏感性,由于酸处理沸石中Si/Al比的提高,这伴随着更大介孔的形成。

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