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首页> 外文期刊>International journal of hydrogen energy >Tri-metallic Ni-Co modified reducible TiO_2 nanocomposite for boosting H_2 production through steam reforming of phenol
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Tri-metallic Ni-Co modified reducible TiO_2 nanocomposite for boosting H_2 production through steam reforming of phenol

机译:Tri-Metallic Ni-Co改性的可再冻TiO_2纳米复合材料通过苯酚蒸汽重整提高H_2生产

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摘要

Well-designed Co3O4 nanocubes (NCs) dispersed NiO/TiO2 to construct tri-metallic reducible NiO/TiO2/Co3O4 NCs structured catalyst for steam-reforming of phenol (SRP) with enhanced hydrogen production has been investigated. The controlled morphology with good dispersion was obtained, enabling efficient SRP toward selective H-2 production. Using 10% NiO- 5% Co3O4 NCs/TiO2 composite, H-2 yield of 69.91% and phenol conversion of 78.4% was achieved, significantly higher than using NiO/TiO2 and TiO2 samples. The cubical structured Co3O4 dispersed NiO/TiO2 composite showed significantly improved H-2 yield and phenol conversion due to strong metal-support interaction with reducible support for providing more active sites. The H-2 production was further increased by increasing reaction temperature, phenol concentration, feed flow rate and catalysts loading, however, they have adverse effect on the selectivity due to more CO formation. The composite catalyst possesses excellent activity and stability due to strong tri-metallic interaction and exceptional electronic interfaces. The spent catalyst analysis confirms the formation of graphene and carbon nanotubes over the reducible support. This study reveals that Co3O4 NCs are able to increase NiO/TiO2 activity for H-2 production by inhibiting carbon monoxide formation and would be beneficial in other reforming applications. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了良好设计的CO3O4纳米尺(NCS)分散的NiO / TiO2构建Tri-Metallic Reducibe NiO / TiO2 / Co3O4ncs结构化催化剂,用于苯酚(SRP)蒸汽重整,具有增强的氢气产生。获得了具有良好分散体的受控形态,使得能够有效的SRP朝向选择性H-2产生。使用10%NiO-5%CO 3 O 4 NCS / TiO 2复合材料,H-2产率为69.91%,酚醛转化率为78.4%,显着高于使用NiO / TiO2和TiO 2样品。由于强的金属支持物与可加工位点的可降解载体强,立方体结构Co3O4分散的NiO / TiO 2复合物显着提高了H-2产率和苯酚转化。通过增加反应温度,苯酚浓度,进料流速和催化剂负载,进一步增加了H-2的产量,然而,由于更多CO形成,它们对选择性具有不利影响。由于强三金属相互作用和特殊的电子界面,复合催化剂具有优异的活性和稳定性。废催化剂分析证实了石墨烯和碳纳米管的形成在可还原载体上。该研究表明,CO 3O4 NCS能够通过抑制一氧化碳形成,增加H-2生产的NiO / TiO2活性,并在其他重整应用中有益。 (c)2021氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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