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March 4, 2026International Journal of Engineering & Technology1 citationsOpen Access

Comparative Study of Ni Loading Methods Towards Superior CO2 Conversion Over Ni/SBA-15

SBS. N. BukhariCCC. C. ChongHSH. D. Setiabudi

Key Points

  • The study aims to compare different Ni loading methods to identify their impact on CO2 conversion efficiency in Ni/SBA-15 catalysts.
  • Synthesis of Ni/SBA-15 using conventional wet impregnation, P123-assisted impregnation, and ultrasonic-assisted impregnation methods.
  • Characterization of the physio-chemical properties of the synthesized catalysts.
  • Evaluation of catalytic performances in CO2 methanation and dry reforming processes.
  • Ni/SBA-15(P123-IM) exhibited the highest CO2 conversion rate at 91.1% and CH4 selectivity at 97.7%.
  • The second-best performance was from Ni/SBA-15(US-IM), followed by Ni/SBA-15(C-IM).
  • P123-assisted method resulted in smaller NiO crystallite size (12.1 nm) and improved metal-support interaction.

Abstract

A series of Ni/SBA-15 catalysts were successfully synthesized via conventional wet impregnation method (C-IM), P123-assisted impregnation method (P123-IM) and ultrasonic-assisted impregnation technique (US-IM) methods. The obtained results confirmed that the impregnation methods significantly influenced the physio-chemical properties of Ni/SBA-15 catalysts, which subsequently influenced the catalytic performances of catalysts. The catalytic performance of catalysts followed the order of Ni/SBA-15(P123-IM) > Ni/SBA-15(US-IM) > Ni/SBA-15(C-IM), indicating the superior performance of Ni/SBA-15(P123-IM) towards CO2 methanation (CO2 conv.: 91.1%, CH4 selec.: 97.7%) and CO2 dry reforming (CO2 conv.: 82.6%, H2/CO: 1.23). The excellent catalytic performances of CO2 methanation and CO2 dry reforming over Ni/SBA-15(P123-IM) were owing to its favorable textural properties; homogenous Ni dispersion, smaller NiO crystallite size (12.1 nm), and a higher concentration of metal-support interaction upon the introduction of P123 as the surfactant during the impregnation method. The P123-IM method successfully synthesized the favorable Ni/SBA-15 for superior CO2 conversion and could be used in various applications

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Cite This Study

Bukhari et al. (2026) studied this question.

synapsesocial.com/papers/69a7cc4cd48f933b5eed7e0chttps://doi.org/10.14419/ijet.v7i4.38.29228
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

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