The State of the Active Sites and Deactivation of Mo-ZSM-5 Catalysts of Methane Dehydroaromatization

2005 ◽  
Vol 404 (4-6) ◽  
pp. 201-204 ◽  
Author(s):  
V. I. Zaikovskii ◽  
A. V. Vosmerikov ◽  
V. F. Anufrienko ◽  
L. L. Korobitsyna ◽  
E. G. Kodenev ◽  
...  
ACS Catalysis ◽  
2021 ◽  
pp. 6771-6786
Author(s):  
Yu Gu ◽  
Pingping Chen ◽  
Xiaohui Wang ◽  
Yuchao Lyu ◽  
Wanrong Liu ◽  
...  

Catalysts ◽  
2021 ◽  
Vol 11 (3) ◽  
pp. 313
Author(s):  
Heidy Ramirez-Mendoza ◽  
Mafalda Valdez Lancinha Pereira ◽  
Tom Van Gerven ◽  
Cécile Lutz ◽  
Ignacio Julian

The activity and selectivity of Mo/ZSM-5, benchmarking catalyst for the non-oxidative dehydroaromatization of methane, strongly depend on the cluster size, spatial distribution, and chemical environment of the Mo-based active sites. This study discloses the use of an ultrasound-assisted ion-exchange (US-IE) technique as an alternative Mo/ZSM-5 synthesis procedure in order to promote metal dispersion along the zeolite framework. For this purpose, a plate transducer (91.8 kHz) is employed to transmit the ultrasonic irradiation (US) into the ion-exchange reactor. The physico-chemical properties and catalytic activity of samples prepared under the said irradiation procedure and traditional impregnation (IWI) method are critically evaluated. Characterization results suggest that US neither affects the crystalline structure nor the particle size of the parent zeolite. However, US-IE promotes molybdenum species dispersion, avoids clustering at the external fresh zeolite surface and enhances molybdate species anchoring to the zeolite framework with respect to IWI. Despite the improved metal dispersion, the catalytic activity between catalysts synthesized by US-IE and IWI is comparable. This suggests that the sole initial dispersion enhancement does not suffice to boost the catalyst productivity and further actions such ZSM-5 support and catalyst pre-conditioning are required. Nevertheless, the successful implementation of US-IE and the resulting metal dispersion enhancement pave the way toward the application of this technique to the synthesis of other dispersed catalysts and materials of interest.


2008 ◽  
Vol 49 (1) ◽  
pp. 110-114 ◽  
Author(s):  
V. V. Kozlov ◽  
V. I. Zaikovskii ◽  
A. V. Vosmerikov ◽  
L. L. Korobitsyna ◽  
G. V. Echevskii

Author(s):  
Sonit Balyan ◽  
Puneet Gupta ◽  
Tuhin S. Khan ◽  
K.K. Pant ◽  
M. Ali Haider

Catalysts ◽  
2020 ◽  
Vol 10 (10) ◽  
pp. 1156 ◽  
Author(s):  
Perla Sánchez-López ◽  
Yulia Kotolevich ◽  
Evgeny Khramov ◽  
Ramesh Kumar Chowdari ◽  
Miguel Angel Estrada ◽  
...  

A series of mono and bimetallic catalysts based on a Fe-Ag mixture deposited on mordenite was prepared by ion-exchange and evaluated in the catalytic activity test of the de-NOx reaction in the presence of CO/C3H6. The activity results showed that the most active samples were the Fe-containing ones, and at high temperatures, a co-promoter effect of Ag on the activity of Fe catalysts was also observed. The influence of the order of cation deposition on catalysts formation and their physicochemical properties was studied by FTIR (Fourier Transform Infrared Spectroscopy) of adsorbed NO, XANES (X-ray Absorption Near-Edge Structure), and EXAFS (Extended X-ray Absorption Fine Structure) and discussed in terms of the state of iron. Results of Fe K-edge XANES oscillations showed that, in FeMOR catalysts, iron was present in a disordered state as Fe3+ and Fe2+. In FeAgMOR, the prevailing species was Fe3+, while in the AgFeMOR catalyst, the state of iron was intermediate or mixed between FeMOR and FeAgMOR. The Fe K-edge EXAFS results were characteristic of a disordered phase, the first coordination sphere being asymmetric with two different Fe-O distances. In FeAgMOR and AgFeMOR, coordination of Fe-O was similar to Fe2O3 with a few amount of Fe2+ species. We may conclude that, in the bimetallic FeAgMOR and AgFeMOR samples, a certain amount of tetrahedral Al3+ ions in the mordenite framework is replaced by Fe3+ ions, confirming the previous reports that these species are active sites for the de-NOx reaction. Based on the thermodynamic analysis and experimental data, also, it was confirmed that the order of deposition of the components influenced the mechanism of active sites’ formation during the two steps ion-exchange synthesis.


2006 ◽  
Vol 47 (3) ◽  
pp. 389-394 ◽  
Author(s):  
V. I. Zaikovskii ◽  
A. V. Vosmerikov ◽  
V. F. Anufrienko ◽  
L. L. Korobitsyna ◽  
E. G. Kodenev ◽  
...  

2009 ◽  
Vol 113 (7) ◽  
pp. 2936-2942 ◽  
Author(s):  
Jian Zhi Hu ◽  
Ja Hun Kwak ◽  
Yong Wang ◽  
Charles H. F. Peden ◽  
Heng Zheng ◽  
...  

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