Literature DB >> 25397692

Simultaneous tuning porosity and basicity of nickel@nickel-magnesium phyllosilicate core-shell catalysts for CO₂ reforming of CH₄.

Ziwei Li1, Yasotha Kathiraser, Jangam Ashok, Usman Oemar, Sibudjing Kawi.   

Abstract

Ni@Ni-Mgphy (Ni-Mgphy = Ni-Mg phyllosilicate) core-shell catalysts were designed by hydrothermally treating Ni@SiO2 nanoparticles with magnesium nitrate salt. The porosity and basicity of the catalysts were easily tuned by forming Ni-Mgphy shell using Ni originating from Ni@SiO2 during the hydrothermal treatment process and Mg(NO3)2 as the Ni and Mg sources, respectively. Among Ni@Ni-Mgphy core-shell catalysts synthesized under different hydrothermal durations, the catalyst treated for 10 h achieved the best catalytic performance for CO2 reforming of CH4 reaction with stable CO2 and CH4 conversions of around 81% and 78%, respectively, within 95 h reaction duration at 700 °C. The high Ni accessibility, strong basicity, and high structural stability for Ni@Ni-Mgphy core-shell catalyst with 10 h treatment time accounted for its superb catalytic performance. This method to simultaneously tune the porosity and basicity of Ni@SiO2 core-shell nanoparticles demonstrates a general way to modify the properties of other silica based core-shell nanoparticles through treating them with different metal salts.

Entities:  

Year:  2014        PMID: 25397692     DOI: 10.1021/la503340s

Source DB:  PubMed          Journal:  Langmuir        ISSN: 0743-7463            Impact factor:   3.882


  2 in total

1.  In Situ X-ray Microscopy Reveals Particle Dynamics in a NiCo Dry Methane Reforming Catalyst under Operating Conditions.

Authors:  Abbas Beheshti Askari; Mustafa Al Samarai; Bruno Morana; Lukas Tillmann; Norbert Pfänder; Aleksandra Wandzilak; Benjamin Watts; Rachid Belkhou; Martin Muhler; Serena DeBeer
Journal:  ACS Catal       Date:  2020-05-01       Impact factor: 13.084

Review 2.  Understanding the performance and mechanism of Mg-containing oxides as support catalysts in the thermal dry reforming of methane.

Authors:  Nor Fazila Khairudin; Mohd Farid Fahmi Sukri; Mehrnoush Khavarian; Abdul Rahman Mohamed
Journal:  Beilstein J Nanotechnol       Date:  2018-04-13       Impact factor: 3.649

  2 in total

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