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Incorporation of Titanium into H-ZSM-5 Zeolite via Chemical Vapor Deposition: Effect of Steam Treatment

机译:通过化学气相沉积将钛掺入H-ZSM-5沸石中:蒸汽处理的效果

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Ti-ZSM-5 prepared by secondary synthesis, from the reaction of H-ZSM-5 with vapor phase TiCl4, was characterized with several physicochemical techniques including FT-IR and UV/VIS-DRS. It was found that zeolite structure, surface area and pore volume did not change, and the framework aluminum could not be replaced by titanium atom during the secondary synthesis of Ti-ZSM-5. The incorporation of titanium into the framework might be due to reaction of TiCl4 with the silanol groups associated with defects or surface sites. The formation of extra-framework titanium could not be avoided, unless the samples were further treated by water vapor at 550 oC or higher temperature. High temperature steam treatment of Ti-ZSM-5 prepared by chemical vapor deposition with TiCl4 was efficient to prevent the formation of non-framework titanium species. Ti-ZSM-5 zeolites prepared in this work contained only framework titanium species and exhibited improved catalytic property close to TS-1 prepared by hydrothermal synthesis.
机译:通过H-ZSM-5与气相TiCl4的反应,通过二次合成制备的Ti-ZSM-5用多种物理化学技术进行了表征,包括FT-IR和UV / VIS-DRS。发现在二次合成Ti-ZSM-5时,沸石的结构,表面积和孔体积没有变化,骨架铝不能被钛原子替代。钛结合到骨架中可能是由于TiCl4与与缺陷或表面部位有关的硅烷醇基反应。除非避免在550 oC或更高温度下用水蒸汽进一步处理样品,否则无法避免形成额外骨架的钛。通过用TiCl4进行化学气相沉积制备的Ti-ZSM-5的高温蒸汽处理可有效防止形成非骨架的钛物质。在这项工作中制备的Ti-ZSM-5沸石仅包含骨架钛物种,并且具有接近于通过水热合成制备的TS-1的改进的催化性能。

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