🔧На сайте запланированы технические работы
25.12.2025 в промежутке с 18:00 до 21:00 по Московскому времени (GMT+3) на сайте будут проводиться плановые технические работы. Возможны перебои с доступом к сайту. Приносим извинения за временные неудобства. Благодарим за понимание!
🔧Site maintenance is scheduled.
Scheduled maintenance will be performed on the site from 6:00 PM to 9:00 PM Moscow time (GMT+3) on December 25, 2025. Site access may be interrupted. We apologize for the inconvenience. Thank you for your understanding!

 

High Carbon-Resistance Ni@CeO2 Core–Shell Catalysts for Dry Reforming of Methane


Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

Ni@CeO2 core–shell catalysts were synthesized via a facile surfactant-assisted hydrothermal method and their catalytic performance in the dry reforming of methane (DRM) reaction was evaluated. A variety of techniques including XRD, N2 adsorption–desorption, SEM, TEM, TPO, TGA were employed to characterize the prepared or spent catalysts. The encapsulation by the CeO2 shell, on one side, can restrict the sintering and growth of Ni nanoparticles under harsh reaction conditions. On the other side, compared to the conventional shell material of SiO2, CeO2 can provide more lattice oxygens and vacancies, which is helpful to suppress coke deposition. Consequently, the Ni@CeO2 core–shell catalysts exhibited better catalytic activity and stability in the DRM reaction with respect to the referenced Ni@SiO2 core–shell catalysts and Ni/CeO2 supported catalysts.

About the authors

Chengli Tang

School of Chemistry and Chemical Engineering

Email: lmzhang@cqu.edu.cn
China, Chongqing, 400044

Lv Liping

School of Chemistry and Chemical Engineering

Email: lmzhang@cqu.edu.cn
China, Chongqing, Fuling 408100

Limei Zhang

School of Chemistry and Chemical Engineering; State Key Laboratory of new micro nano devices and systems technology; Key Laboratory of Low-grade Energy Utilization Technologies & Systems of the Ministry of Education

Author for correspondence.
Email: lmzhang@cqu.edu.cn
China, Chongqing, 400044; Chongqing, 400044; Chongqing, 401331

Luxi Tan

School of Chemistry and Chemical Engineering; State Key Laboratory of new micro nano devices and systems technology; Key Laboratory of Low-grade Energy Utilization Technologies & Systems of the Ministry of Education

Email: lmzhang@cqu.edu.cn
China, Chongqing, 400044; Chongqing, 400044; Chongqing, 401331

Lichun Dong

School of Chemistry and Chemical Engineering; State Key Laboratory of new micro nano devices and systems technology; Key Laboratory of Low-grade Energy Utilization Technologies & Systems of the Ministry of Education

Email: lmzhang@cqu.edu.cn
China, Chongqing, 400044; Chongqing, 400044; Chongqing, 401331

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2017 Pleiades Publishing, Ltd.