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Structure and Evolution of Confined Carbon Species during Methane Dehydroaromatization over Mo/ZSM-5

机译:Mo / ZSM-5甲烷脱氢致氢甲甲瘤期间狭窄碳物种的结构和演变

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摘要

Surface carbon (coke, carbonaceous deposits) is an integral aspect of methane dehydroaromatization catalyzed by Mo/zeolites. We investigated the evolution of surface carbon species from the beginning of the induction period until the complete catalyst deactivation by the pulse reaction technique, TGA, C-13 NMR, TEM, and XPS. Isotope labeling was performed to confirm the catalytic role of confined carbon species during MDA. It was found that "hard" and "soft" coke distinction is mainly related to the location of coke species inside the pores and on the external surface, respectively. In addition, MoO3 species act as an active oxidation catalyst, reducing the combustion temperature of a certain fraction of coke. Furthermore, after dissolving the zeolite framework by HF, we found that coke formed during the MDA reaction inside the zeolite pores is essentially a zeolite-templated carbon material. The possibility of preparing zeolite-templated carbons from the most available hydrocarbon feedstock is important for the development of these interesting materials.
机译:表面碳(焦炭,碳质沉积物)是由Mo /沸石催化的甲烷脱氢致氢化的一体方面。我们研究了从诱导期开始的表面碳物种的演变,直到通过脉冲反应技术,TGA,C-13 NMR,TEM和XPS完全催化剂去激活。进行同位素标记以确认在MDA期间限制碳物质的催化作用。结果发现,“硬”和“软”焦炭区别主要与孔内的焦炭和外表面上的焦炭物种的位置有关。另外,MOO3物种充当活性氧化催化剂,降低了一定部分的焦炭的燃烧温度。此外,在通过HF溶解沸石框架之后,我们发现在沸石孔内MDA反应期间形成的焦炭基本上是沸石模板碳材料。从最可用的碳氢化合物原料中制备沸石模板碳的可能性对于这些有趣的材料的发展是重要的。

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