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首页> 外文期刊>Applied Surface Science >Promotional effect of tungsten-doped CeO2/TiO2 for selective catalytic reduction of NOx with ammonia
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Promotional effect of tungsten-doped CeO2/TiO2 for selective catalytic reduction of NOx with ammonia

机译:掺钨CeO2 / TiO2对氨选择性催化还原NOx的促进作用

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We examined the effects that the physicochemical properties of Ce/Me/Ti catalysts had on the selective catalytic reduction (SCR) activity after various metals (W, Mo, and La) were added to non-vanadium-based catalysts in order to improve NH3-SCR activity. We studied the properties of the catalysts through the use of physiochemical techniques, including Brunauer-Emmett-Teller (BET) surface area analysis, X-ray diffraction (XRD), H-2 temperature-programmed reduction (H-2-TPR), X-ray photoelectron spectroscopy (XPS) transmission infrared spectroscopy (IR), and inductively coupled plasma optic emission spectroscopy (ICP). The catalytic activity tests of the Ce/Ti catalysts with various ceria loadings revealed that the Ce/Ti with 10 wt.% ceria (10Ce/Ti) exhibited excellent activity. Thus, various metals were added to the 10Ce/Ti. The tungsten-doped 10Ce/Ti catalyst exhibited the highest activity (10Ce/W/Ti: Ce was deposited after tungsten had been deposited on TiO2). We investigated the correlation between the catalyst's Ce valence state and its activity. Different Ce3+ ratios were observed when various metals were added to Ce/Ti. The highest Ce3+ ratio was observed in 10Ce/W/Ti at 0.3027, and the catalyst efficiency had a positive correlation with higher Ce3+ ratios. The SCR activity was found to increase as the Ce3+ ratio increased when tungsten was added to 10Ce/W/Ti. Furthermore, in the case of 10Ce/W/Ti, it seemed that the Bronsted acid sites were more abundant relative to those on 10Ce/Ti. Upon the injection of SO2 in the SCR reaction, 10Ce/Ti was rapidly deactivated. However, the 10Ce/W/Ti catalyst exhibited an excellent resistance to SO2-induced deactivation relative to 10Ce/Ti. Thus, the addition of tungsten to Ce/Ti resulted in excellent NOx conversion and SO2 resistance. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们检查了Ce / Me / Ti催化剂的理化性质对将各种金属(W,Mo和La)添加到非钒基催化剂中以改善NH3后对选择性催化还原(SCR)活性的影响。 -SCR活动。我们通过使用物理化学技术研究了催化剂的性能,包括Brunauer-Emmett-Teller(BET)表面积分析,X射线衍射(XRD),H-2程序升温还原(H-2-TPR), X射线光电子能谱(XPS)透射红外光谱(IR)和电感耦合等离子体发射光谱(ICP)。具有各种二氧化铈负载量的Ce / Ti催化剂的催化活性测试表明,具有10 wt。%二氧化铈(10Ce / Ti)的Ce / Ti表现出优异的活性。因此,各种金属被添加到10Ce / Ti中。掺钨的10Ce / Ti催化剂表现出最高的活性(10Ce / W / Ti:Ce沉积在TiO2上之后才沉积了Ce)。我们研究了催化剂的Ce价态与其活性之间的关系。当将各种金属添加到Ce / Ti中时,观察到不同的Ce3 +比。在10Ce / W / Ti中观察到最高Ce3 +比为0.3027,并且催化剂效率与较高Ce3 +比呈正相关。当将钨添加到10Ce / W / Ti中时,发现SCR活性随着Ce3 +比的增加而增加。此外,在10Ce / W / Ti的情况下,布朗斯台德酸位似乎比10Ce / W / Ti上的酸位更丰富。在SCR反应中注入SO2后,10Ce / Ti迅速失活。然而,相对于10Ce / Ti,10Ce / W / Ti催化剂对SO2诱导的失活表现出优异的抵抗力。因此,在Ce / Ti中添加钨可产生出色的NOx转化率和SO2耐受性。 (C)2015 Elsevier B.V.保留所有权利。

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