Research Progress of Carbon Deposition on Ni-Based Catalyst for CO2-CH4 Reforming

Author:

Ren Yuan1,Ma Ya-Ya12,Mo Wen-Long1,Guo Jing3ORCID,Liu Qing4,Fan Xing4,Zhang Shu-Pei5

Affiliation:

1. State Key Laboratory of Chemistry and Utilization of Carbon-Based Energy Resources and Key Laboratory of Coal Clean Conversion & Chemical Engineering Process (Xinjiang Uyghur Autonomous Region), School of Chemical Engineering and Technology, Xinjiang University, Urumqi 830046, China

2. Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, China

3. School of Chemistry and Chemical Engineering, Ningxia Normal University, Guyuan 756000, China

4. College of Chemical and Biological Engineering, Shandong University of Science and Technology, Qingdao 266590, China

5. Xinjiang Yihua Chemical Industry Co., Ltd., Changji 831700, China

Abstract

As we all know, the massive emission of carbon dioxide has become a huge ecological and environmental problem. The extensive exploration, exploitation, transportation, storage, and use of natural gas resources will result in the emittance of a large amount of the greenhouse gas CH4. Therefore, the treatment and utilization of the main greenhouse gases, CO2 and CH4, are extremely urgent. The CH4 + CO2 reaction is usually called the dry methane reforming reaction (CRM/DRM), which can realize the direct conversion and utilization of CH4 and CO2, and it is of great significance for carbon emission reduction and the resource utilization of CO2-rich natural gas. In order to improve the activity, selectivity, and stability of the CO2-CH4 reforming catalyst, the highly active and relatively cheap metal Ni is usually used as the active component of the catalyst. In the CO2-CH4 reforming process, the widely studied Ni-based catalysts are prone to inactivation due to carbon deposition, which limits their large-scale industrial application. Due to the limitation of thermodynamic equilibrium, the CRM reaction needs to obtain high conversion and selectivity at a high temperature. Therefore, how to improve the anti-carbon deposition ability of the Ni-based catalyst, how to improve its stability, and how to eliminate carbon deposition are the main difficulties faced at present.

Funder

natural science foundation of Xinjiang Uyghur Autonomous Region

Ningxia natural science foundation

high quality development special project for science and technology supporting industry from Changji

special project for the central government to guide local scientific and technological development

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis,General Environmental Science

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