Literature DB >> 16706455

CO2 reforming of CH4 on Ni(111): a density functional theory calculation.

Sheng-Guang Wang1, Dong-Bo Cao, Yong-Wang Li, Jianguo Wang, Haijun Jiao.   

Abstract

CO(2) reforming of CH(4) on Ni(111) was investigated by using density functional theory. On the basis of thermodynamic analyses, the first step is CH(4) sequential dissociation into surface CH (CH(4) --> CH(3) --> CH(2) --> CH) and hydrogen, and CO(2) dissociation into surface CO and O (CO(2) --> CO + O). The second step is CH oxygenation into CHO (CH + O --> CHO), which is more favored than dissociation into C and hydrogen (CH --> C + H). The third step is the dissociation of CHO into surface CO and H (CHO --> CO + H). This can explain the enhanced selectivity toward the formation of CO and H(2) on Ni catalysts. It is found that surface carbon formation by the Bouduard back reaction (2CO = C((ads)) + CO(2)) is more favored than by CH(4) sequential dehydrogenation. The major problem of CO(2) reforming of CH(4) is the very strong CO adsorption on Ni(111), which results in the accumulation of CO on the surface and hinders the subsequent reactions and promotes carbon deposition. Therefore, promoting CO desorption should maintain the reactivity and stability of Ni catalysts. The computed energy barriers of the most favorable elementary reaction identify the CH(4) activation into CH(3) and H as the rate-determining step of CO(2) reforming of CH(4) on Ni(111), in agreement with the isotopic experimental results.

Entities:  

Year:  2006        PMID: 16706455     DOI: 10.1021/jp060992g

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  2 in total

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Authors:  Aseel G S Hussien; Kyriaki Polychronopoulou
Journal:  Nanomaterials (Basel)       Date:  2022-09-28       Impact factor: 5.719

2.  Reaction Pathway for Coke-Free Methane Steam Reforming on a Ni/CeO2 Catalyst: Active Sites and the Role of Metal-Support Interactions.

Authors:  Agustín Salcedo; Pablo G Lustemberg; Ning Rui; Robert M Palomino; Zongyuan Liu; Slavomir Nemsak; Sanjaya D Senanayake; José A Rodriguez; M Verónica Ganduglia-Pirovano; Beatriz Irigoyen
Journal:  ACS Catal       Date:  2021-06-23       Impact factor: 13.084

  2 in total

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