首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Experimental Microkinetic Approach of De-NOx by NH3 on V2O5/WO3/TiO2 Catalysts. 3. Impact of Superficial WOz and VxOy/WOz Groups on the Heats of Adsorption of Adsorbed NH3 Species
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Experimental Microkinetic Approach of De-NOx by NH3 on V2O5/WO3/TiO2 Catalysts. 3. Impact of Superficial WOz and VxOy/WOz Groups on the Heats of Adsorption of Adsorbed NH3 Species

机译:NH3在V2O5 / WO3 / TiO2催化剂上脱硝NOx的实验微动力学方法。 3.表面的WOz和VxOy / WOz基团对吸附的NH3物种的吸附热的影响

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The present article is dedicated to the measurement of the individual heats of adsorption of adsorbed NH3 species on WO3/TiO2 and V2O5/WO3/TiO2 (a catalyst for the selective catalytic reduction of NOx by NH3 on stationary sources, briefly NH3-SCR) model and commercial solids by using an original experimental procedure (adsorption equilibrium infrared spectroscopy, AEIR) developed in parts 1 [Giraud et al. J. Phys. Chem. C 2014, 118, 15664] and 2 [Giraud et al. J. Phys. Chem. C 2014, 118, 15677] for the adsorbed NH3 species on TiO, and V2O5/TiO2 solids. In agreement with the literature, Raman and Fourier transform infrared spectra indicate the presence of well-dispersed VxOy and WOz entities on the different solids. For NH3 adsorption at pressure P-a < 0.5 IrPa and temperature T-a in the range 300-673 K, the modifications of the V=O and W=O overtone IR bands indicate that these entities are involved in the adsorption of NH3, forming NH3ads-L, and NH4+ species on Lewis and Br-misted sites, respectively. For T-a = 300 K, it is shown that four adsorbed NH3 species are formed on the WOz- containing catalysts: two are adsorbed on Lewis sites, named NH3ads-L1 and NH3ads-L2, and two are adsorbed on Bronsted sites, named NH4+-1 and NH4+-2 ("1" and "2" indicate the increasing order of stability of the different species). Using the delta(as) IR band characteristic of the NH3ads-L (similar to 1600 cm(-1)) and NH4+ (similar to 1445 cm(-1)) species, it is shown that the AEIR method provides the individual heats of adsorption of the four adsorbed species at low and high coverages of their adsorption sites. For instance, on a model 0.5% V2O5/6% WO3/TiO2 catalyst the heats of adsorption of the two more stable species (which slightly change with the exact composition of the solid) at low and high coverages of the sites are 105 and 148 kJ/mol for NH3ads-L2 and 78 and 135 kJ/mol for the NH4+-2 species, respectively. These values indicate that the presence of WOz increases significantly the heat of adsorption of the NH4+ species, as compared to TiO2 and V2O5/TiO2, explaining that both NH3(ads-L2) and NH4+-2 species can be present in the experimental conditions of NH3-SCR.
机译:本文致力于测量被吸附的NH3物质在WO3 / TiO2和V2O5 / WO3 / TiO2上的单个吸附热(用于固定源上NH3选择性催化还原NOx的催化剂,简称NH3-SCR)模型通过使用第1部分中开发的原始实验程序(吸附平衡红外光谱法,AEIR)获得商用和固体产品[Giraud et al。 J.物理化学C 2014,118,15664]和2 [Giraud et al。 J.物理化学[C 2014,118,15677]表示TiO3和V2O5 / TiO2固体吸附的NH3种类。与文献一致,拉曼和傅立叶变换红外光谱表明在不同固体上存在分散良好的VxOy和WOz实体。对于压力Pa <0.5 IrPa和温度Ta在300-673 K范围内的NH3吸附,V = O和W = O泛音IR带的修饰表明这些实体参与了NH3的吸附,形成NH3ads-L和分别在Lewis和Br扩散位点的NH4 +种类。对于Ta = 300 K,表明在含WOz的催化剂上形成了四个吸附的NH3物种:两个吸附在Lewis位点上,称为NH3ads-L1和NH3ads-L2,两个吸附在Bronsted位点上,称为NH4 +- 1和NH4 + -2(“ 1​​”和“ 2”表示不同物种的稳定性增加顺序)。使用NH3ads-L(类似于1600 cm(-1))和NH4 +(类似于1445 cm(-1))物种的δ(as)IR带特征,表明AEIR方法提供了四种吸附物质在其吸附位点的低和高覆盖率下的吸附。例如,在模型为0.5%的V2O5 / 6%WO3 / TiO2催化剂上,低和高覆盖率的两种更稳定的物质(随固体的确切组成而略有变化)的吸附热分别为105和148 NH3ads-L2的kJ / mol和NH4 + -2的kJ / mol分别为78和135 kJ / mol。这些值表明,与TiO2和V2O5 / TiO2相比,WOz的存在显着增加了NH4 +物质的吸附热,这说明NH3(ads-L2)和NH4 + -2物质都可以存在于TiO2的实验条件下。 NH3-SCR。

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