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Ultrahigh mechanically stable hierarchical mordenite zeolite monolith: Direct binder-/template-free hydrothermal synthesis

机译:机械稳定性极高的分级丝光沸石整体结构:无粘结剂/无模板的直接水热合成

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Micro-macroporous hierarchical mordenite (MOR topology) zeolitic monoliths with ultrahigh mechanical stability (crushing strength: 38 MPa) were directly prepared by the one-pot hydrothermal synthesis involving an unconventional acidic hydrolysis route. The obtained monolith exhibited highly crystallized MOR structure with the surface area of 388 m(2) g(-1) and pore volume of 0.2 cm(3) g(-1), same as its powder analog. Moreover, it is the first example of binder-free hierarchical zeolites with the high mechanical strength comparable to industrially available binder-shaped counterparts. The micro-shape of primary particles and macro-shape of monoliths could be controlled by varying the elemental synthetic conditions. The synthesis is an efficient, sustainable and environmentally friendly approach because it avoids the employment of sacrificial templates, binders and high-temperature calcination, not only saving energy and time, but also inhibiting waste release. Also importantly, the MOR monolith could be directly used as the shaped catalyst without additional post-mold treatments. Catalytic tests in solvent-free Friedel-Crafts benzylation reaction of benzene with benzyl alcohol showed that the MOR monolith was much more active than its powder and binder-shaped control catalysts. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过涉及非常规酸性水解途径的一锅水热合成法,直接制备了具有超高机械稳定性(抗压强度:38 MPa)的微大孔型丝光沸石(MOR拓扑)沸石整料。所获得的整体表现出高度结晶的MOR结构,表面积为388 m(2)g(-1),孔体积为0.2 cm(3)g(-1),与其粉末类似物相同。而且,它是无粘合剂的分级沸石的第一个实例,其具有与工业上可得到的粘合剂状对应物相比高的机械强度。初级粒子的微观形状和整体结构的宏观形状可以通过改变元素合成条件来控制。该合成方法是一种有效,可持续和环保的方法,因为它避免了使用牺牲模板,粘合剂和高温煅烧,不仅节省了能源和时间,而且还抑制了废物的释放。同样重要的是,MOR整料可直接用作成型催化剂,而无需进行额外的后成型处理。苯与苯甲醇的无溶剂Friedel-Crafts苄基化反应的催化试验表明,MOR整体结构比其粉末状和粘合剂型控制催化剂更具活性。 (C)2015 Elsevier Ltd.保留所有权利。

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