Promoter Impact on 5Ni/SAPO-5 Catalyst for H2 Production via Methane Partial Oxidation

Catalysts Pub Date : 2024-05-10 DOI:10.3390/catal14050316
Abdulaziz Al-Anazi, Omer Bellahwel, Kavitha C., J. Abu‐Dahrieh, A. Ibrahim, S. Santhosh, A. Abasaeed, A. Fakeeha, Ahmed S. Al-Fatesh
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Abstract

Compared to steam reforming techniques, partial oxidation of methane (POM) is a promising technology to improve the efficiency of synthesizing syngas, which is a mixture of CO and H2. In this study, partial oxidation of methane (POM) was used to create syngas, a combination of CO and H2, using the SAPO-5-supported Ni catalysts. Using the wetness impregnation process, laboratory-synthesized Ni promoted with Sr, Ce, and Cu was used to modify the SAPO-5 support. The characterization results demonstrated that Ni is appropriate for the POM due to its crystalline structure, improved metal support contact, and increased thermal stability with Sr, Ce, and Cu promoters. During POM at 600 °C, the synthesized 5Ni+1Sr/SAPO-5 catalyst sustained stability for 240 min on stream. While keeping the reactants stoichiometric ratio of (CH4:O2 = 2:1), the addition of Sr promoter and active metal Ni to the SAPO-5 increased the CH4 conversion from 41.13% to 49.11% and improved the H2/CO ratio of 3.33. SAPO-5-supported 5Ni+1Sr catalysts have great potential for industrial catalysis owing to their unique combination of several oxides. This composition not only boosts the catalyst’s activity but also promotes favorable physiochemical properties, resulting in improved production of syngas. Syngas is a valuable intermediate in various industrial processes.
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促进剂对通过甲烷部分氧化制取 H2 的 5Ni/SAPO-5 催化剂的影响
与蒸汽转化技术相比,甲烷部分氧化(POM)是一种很有前途的技术,可提高合成合成气(一氧化碳和二氧化碳的混合物)的效率。本研究利用 SAPO-5 支持的镍催化剂,采用甲烷部分氧化(POM)技术制造 CO 和 H2 混合的合成气。采用湿法浸渍工艺,用实验室合成的镍促进锶、铈和铜对 SAPO-5 载体进行改性。表征结果表明,由于镍的结晶结构、金属支撑接触的改善以及与 Sr、Ce 和 Cu 促进剂的热稳定性的提高,镍非常适合用于 POM。在 600 °C 下进行 POM 反应时,合成的 5Ni+1Sr/SAPO-5 催化剂在 240 分钟内保持稳定。在保持反应物化学计量比(CH4:O2 = 2:1)的情况下,向 SAPO-5 添加 Sr 促进剂和活性金属 Ni 可将 CH4 转化率从 41.13% 提高到 49.11%,并将 H2/CO 比率提高到 3.33。SAPO-5支撑的5Ni+1Sr催化剂具有多种氧化物的独特组合,因此在工业催化方面具有巨大潜力。这种组合不仅能提高催化剂的活性,还能促进其良好的理化特性,从而提高合成气的产量。合成气是各种工业流程中的重要中间产物。
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