首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Ordered mesoporous 'one-pot' synthesized Ni-Mg(Ca)-Al2O3 as effective and remarkably stable catalysts for combined steam and dry reforming of methane (CSDRM)
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Ordered mesoporous 'one-pot' synthesized Ni-Mg(Ca)-Al2O3 as effective and remarkably stable catalysts for combined steam and dry reforming of methane (CSDRM)

机译:有序介孔“一锅法”合成的Ni-Mg(Ca)-Al2O3是有效的和非常稳定的催化剂,用于蒸汽和甲烷的干重整(CSDRM)

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摘要

Two series of Ni-x% (x: 5-10 wt%) and Ni5%M5% (M: Ca or Mg) containing mesoporous Al2O3 catalysts were prepared by "one-pot" synthesis following an evaporation-induced self-assembly (EISA) method. After reduction, the catalysts showed very high Ni dispersion within the structured oxide matrix giving high activities and long-term stabilities in combined steam and dry reforming of methane (CSDRM) carried out at 800 degrees C. Both the increase of Ni content and the addition of Mg (or Ca) are beneficial to performances, with activity levels reaching the maximum-expected thermodynamic ones for Ni10%Al2O3. In the Mg (or Ca) free catalysts, a relationship between nickel content, reactivity level and carbon deposition is found. Nevertheless, carbon formation is not detrimental to catalytic stability due to formation of carbon nanotubes only outside the nickel containing alumina grains. Addition of Ca or Mg suppresses to a great extent carbon deposition and leads to high selectivity towards the targeted CSDRM reaction, with almost no occurrence of side reactions. The remarkable thermal stability of the ordered-mesoporous alumina structure (along 40 h of run) along with the stabilization of well-dispersed Ni-0 within the alumina matrix are shown to be key factors accounting for the excellent long term catalytic performances in spite of the harsh conditions (temperature and steam) imposed by the reaction (C) 2016 Elsevier B.V. All rights reserved.
机译:在蒸发诱导的自组装后,通过“一锅法”合成制备了两个系列的含Ni-x%(x:5-10 wt%)和Ni5%M5%(M:Ca或Mg)的介孔Al2O3催化剂。 EISA)方法。还原后,催化剂在结构化的氧化物基质中显示出很高的镍分散度,从而在800℃下进行的蒸汽和甲烷干重整(CSDRM)联合生产中具有很高的活性和长期稳定性。镍含量的增加和添加Mg(或Ca)的含量对性能有好处,其活性水平达到Ni10%Al2O3的最大热力学值。在不含镁(或钙)的催化剂中,发现镍含量,反应性水平和碳沉积之间的关系。然而,由于仅在含镍的氧化铝颗粒的外部形成碳纳米管,所以碳的形成不会损害催化稳定性。 Ca或Mg的添加在很大程度上抑制了碳沉积并导致对目标CSDRM反应的高选择性,几乎没有副反应的发生。有序介孔氧化铝结构(运行40小时)的出色热稳定性以及在氧化铝基体内稳定分散的Ni-0的稳定性被证明是尽管长期以来仍具有出色的长期催化性能的关键因素。反应引起的恶劣条件(温度和蒸汽)(C)2016 Elsevier BV保留所有权利。

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