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Textural mesoporosity and opening frame network of mesoporous MOR zeolites synthesized under intensifying perturbation conditions

机译:强化扰动条件下合成的MOR介孔沸石的介孔介孔结构和开放框架网络

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Several amorphous, composite and crystalline mesoporous aluminosilicates were synthesized via perturbation routes and using combined templates. By powder X-ray diffraction, nitrogen adsorption at 77 K, transmission electron microscopy, ammonia temperature-programmed desorption and thermogravimet-ric-differential thermal analyses, intensifying perturbations impacted on product phase, mesoporosity and textural feature were investigated according to synthesis modes of T1(t1) → T2(t2), wherein a cooperative alteration to T_i(t_i) resulted in a variation in perturbation intensity (ΔT_i(t_i), i = 1,2). As a consequence, the perturbations imposed on synthesis conditions caused significant changes in mesostructure, crystallinity and acidity of resulting materials. The structural difference between two types of composite mesoporous materials was the transformation from an inhomogeneous phase into a hypocrystalline phase. Mesoporous mordenites (MOR) with a hierarchy of pores exhibited crystalline mesoporous textures featuring of bulky structural defects. Among them, opening frames per se observed in mesoscale were of crystallized mesoporous MOR matrixes. These results confirmed the important role of perturbation intensity taken as coupling kinetic factors in controlling over the solid crystalline and additional mesoporous properties. Upon TG weight loss rates (%) and DTA peak temperatures for total combustibles and derived cokes, these alkylam-monium and aliphatic amines captured were strongly restricted by framework charges and irregular mes-opore geometries of the MOR zeolites, and therefore partially transformed into cokes hardly to remove. Additionally, there was a prominently linear response to the correlation between specific pore volume and total combustible weight loss rate for all mesoporous materials.
机译:通过摄动途径并使用组合模板合成了几种无定形,复合和结晶的介孔铝硅酸盐。通过粉末X射线衍射,77 K下的氮吸附,透射电镜,氨程序升温脱附和热重-微分热分析,根据T1的合成模式,研究了对产物相,介孔率和织构特征的加剧扰动。 (t1)→T2(t2),其中,对T_i(t_i)的合作更改会导致摄动强度发生变化(ΔT_i(t_i),i = 1,2)。结果,施加在合成条件上的扰动导致所得材料的介观结构,结晶度和酸度发生显着变化。两种类型的复合介孔材料之间的结构差异是从不均匀相到次晶相的转变。具有孔隙层次的介孔丝光沸石(MOR)表现出具有大量结构缺陷的结晶介孔质地。其中,在中尺度上观察到的开放框架本身是结晶的中孔MOR基质。这些结果证实了扰动强度作为控制动力学参数在控制固体晶体和其他介孔性质中的重要作用。根据总可燃物和衍生焦炭的TG失重率(%)和DTA峰值温度,这些捕获的烷基铵盐和脂肪族胺受到MOR沸石骨架电荷和不规则介孔几何形状的强烈限制,因此部分转化为焦炭很难删除。另外,对于所有中孔材料,比孔体积与可燃总失重率之间的相关性具有显着的线性响应。

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