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Effect of the order of potassium introduction on the texture and activity of Mo/Al2O3 catalysts in water gas shift reaction

机译:钾的引入顺序对水煤气变换反应中Mo / Al2O3催化剂的织构和活性的影响

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The effect of deposition and order of potassium introduction on the texture and activity of Mo/gamma-Al2O3 catalysts in water gas shift (WGS) reaction was investigated. The samples were synthesised by incipient wetness impregnation of the carrier with aqueous solutions of the corresponding salts followed by drying and calcination after each deposition step. The prepared catalyst precursors were sulphided at 400 degrees C for 2 h with 6% H2S in H-2 before testing in WGS reaction in a glass flow apparatus at 400 degrees C under atmospheric pressure. The results show that potassium deposition alone on the bare gamma-Al2O3 (sample K/Al2O3) decreases the specific surface after calcination by blocking the constrictions between the pores in the primary porous texture. Ln the WGS reaction conditions part of the pores are deblocked and a redistribution in the pore volumes occurs. The deposition of the Mo (sample Mo/Al2O3) also results in a decrease in both specific surface and total pore volume with respect to the bare support. However after catalytic activity test no substantial changes in its texture were observed, The addition of K to the Mo (sample KMo/Al2O3) leads to nonuniformity in distribution of molybdenum-oxygen entities due to partial migration of the MoOx species to the external surface. The specific surface is not changed during the reaction test. The deposition of Mo on K/Al2O3 contributes to the uniform distribution of oxomolybdenum species in the porous texture of the support. This uniformity is preserved to a high extent in the catalytic reaction as well. The activity in the synthesised samples in the WGS reaction decreases in the order MoK/Al2O3 > Mo/Al2O3 > KMo/Al2O3. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 17]
机译:研究了水煤气变换(WGS)反应中沉积钾的顺序和引入钾的顺序对Mo /γ-Al2O3催化剂的织构和活性的影响。通过用相应盐的水溶液对载体进行初期湿润浸渍,然后在每个沉积步骤之后进行干燥和煅烧来合成样品。将制备的催化剂前体在400℃,大气压下于玻璃流动装置中于WGS反应中进行测试之前,先在H-2中用6%H2S在400℃下硫化2小时。结果表明,单独的钾沉积在裸露的γ-Al2O3(样品K / Al2O3)上会通过阻塞初级多孔织构中孔之间的收缩来降低煅烧后的比表面。在WGS反应条件下,部分孔被解封,并且孔体积发生重新分布。 Mo的沉积(样品Mo / Al2O3)也导致相对于裸露载体的比表面积和总孔体积均减少。然而,在催化活性测试之后,没有观察到其质地的实质性变化。由于MoOx物种向外部表面的部分迁移,向Mo中添加K(样品KMo / Al2O3)会导致钼-氧实体分布不均匀。在反应测试中,比表面没有变化。 Mo在K / Al2O3上的沉积有助于在载体的多孔结构中均匀分布钼钼物种。在催化反应中也高度保留这种均匀性。 WGS反应中合成样品中的活性按MoK / Al2O3> Mo / Al2O3> KMo / Al2O3的顺序降低。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:17]

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