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首页> 外文期刊>Journal of Catalysis >Insight into Cu2O/CuO collaboration in the selective catalytic reduction of NO with NH3: Enhanced activity and synergistic mechanism
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Insight into Cu2O/CuO collaboration in the selective catalytic reduction of NO with NH3: Enhanced activity and synergistic mechanism

机译:在NH 3的选择性催化还原中的选择性催化还原中的CU2O / CUO合作的洞察:增强的活性和协同机制

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Cu-based catalysts have drawn much attention in ammonia-selective catalytic reduction (NH3-SCR) of NOx because of their outstanding low-temperature denitration (de-NOx) potential. Although satisfactory SCR performance was obtained with support from the catalytic activity of CuOx species in recent studies, the effect of the valence distribution of CuOx species on NH3-SCR reaction is still ambiguous, and elaborate exploration is necessary. Here, a series of CuAl-layered double oxide/carbon nanotubes-x (CuAl-LDO/CNTs-x) nanocatalysts with a tunable valence distribution of highly dispersed CuOx species was constructed from the topotactic transformation of CuAl-layered double hydroxide (CuAl-LDH) precursor and a controllable carbothermal reduction reaction. Multiple characterization techniques, including XRD, NH3-TPD, H-2-TPR, NOx-TPD, XPS, in situ DRIFTS, and HR-TEM, were employed to elucidate the inherent relationship between the chemical properties and catalytic activity of the as-prepared catalysts. The obtained CuAl-LDO/CNTs-2 catalyst exhibited optimum catalytic performance, with NOx conversion exceeding 90% in the temperature range 180-305 degrees C. Such high catalytic efficiency can be attributed to the appropriate valence distribution of CuOx species, which can significantly improve the redox capacity and surface acidity of the catalysts, thereby promoting the adsorption and activation of the reactants. Combined with further theoretical calculation, a synergistic catalytic mechanism of Cu2O/CuO in the NH3-SCR reaction is tentatively proposed. Notably, the CuO active center can function as the dominant adsorption site of NO and NH3 to promote the formation of NO+ active species and the dehydrogenation activation of NH3. The Cu2O active center can act as the adsorption site for O, promoting the formation of active oxygen species O-. Consequently, the synergistic effect between Cu2O and CuO can lead to the rapid formation of reactive intermediates, proceeding via the Langmuir-Hinshelwood (reaction between adsorbed NH3 and adsorbed NOx) or Eley-Rideal (reaction between adsorbed NH3 and gaseous NO) mechanism reaction routes to complete the catalytic cycle. This work provides a fundamental understanding on Cu2O/CuO synergistic catalysis of NH3-SCR, which is propitious for the rational design and optimization of Cu-based oxide de-NOx catalysts. (C) 2020 Elsevier Inc. All rights reserved.
机译:由于其出色的低温脱硝(DE-NOx)电位,Cu基催化剂在NOx的氨选择性催化还原(NH3-SCR)中具有很多关注。尽管在最近的研究中,通过Cux物种的催化活性获得了令人满意的SCR性能,但Cux物种对NH3-SCR反应的价值分布的影响仍然是模糊的,并且需要精细的勘探。这里,由高分子双氢氧化物的拓扑转化构建了一系列具有高度分散的CuOx物种的可调谐价分布的一系列的双层双氧化物/碳纳米管-X(Cual-LDO / CNTS-X)纳米催化剂(Cual- LDH)前体和可控的碳热还原反应。多种表征技术,包括XRD,NH3-TPD,H-2-TPR,NOx-TPD,XPS,原位漂移和HR-TEM,以阐明其作为 - 的化学性质和催化活性之间的固有关系。制备的催化剂。所获得的Cual-LDO / CNTS-2催化剂表现出最佳的催化性能,NOx转化率超过90%在180-305℃的温度范围内。这种高催化效率可归因于CUOX物种的适当价分布,这可以显着提高催化剂的氧化还原容量和表面酸度,从而促进反应物的吸附和活化。结合进一步的理论计算,提出了NH3-SCR反应中Cu 2 O / CuO的协同催化机制。值得注意的是,CuO活性中心可以用作NO和NH 3的显性吸附部位,以促进NO +活性物质的形成和NH3的脱氢活化。 Cu2O活性中心可作为O的吸附部位,促进活性氧物种O-的形成。因此,Cu2O和CuO之间的协同效应可以导致反应性中间体的快速形成,通过Langmuir-Hinshelwood进行(吸附的NH 3和吸附NOx之间的反应)或eley-rideal(吸附NH 3和气态NO之间的反应)机制反应途径完成催化循环。该作品对NH3-SCR的Cu2O / CuO协同催化剂提供了基本的理解,该催化是有利于合理的设计和优化Cu基氧化物去NOx催化剂的催化剂。 (c)2020 Elsevier Inc.保留所有权利。

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