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Direct Synthesis of Dimethyl Ether from Syngas on Bifunctional Hybrid Catalysts Based on Supported H 3 PW 12 O 40 and Cu-ZnO(Al): Effect of Heteropolyacid Loading on Hybrid Structure and Catalytic Activity

机译:基于负载的H 3 PW 12 O 40和Cu-ZnO(Al)的双官能杂化催化剂直接合成二甲醚在双官能杂化催化剂上的二甲醚:杂多酸负载对杂化结构和催化活性的影响

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The performance of bifunctional hybrid catalysts based on phosphotungstic acid (H 3 PW 12 O 40 , HPW) supported on TiO 2 combined with Cu-ZnO(Al) catalyst in the direct synthesis of dimethyl ether (DME) from syngas has been investigated. We studied the effect of the HPW loading on TiO 2 (from 1.4 to 2.7 monolayers) on the dispersion and acid characteristics of the HPW clusters. When the concentration of the heteropoliacid is slightly higher than the monolayer (1.4 monolayers) the acidity of the clusters is perturbed by the surface of titania, while for concentration higher than 1.7 monolayers results in the formation of three-dimensional HPW nanocrystals with acidity similar to the bulk heteropolyacid. Physical hybridization of supported heteropolyacids with the Cu-ZnO(Al) catalyst modifies both the acid characteristics of the supported heteropolyacids and the copper surface area of the Cu-ZnO(Al) catalyst. Hybridization gives rise to a decrease in the copper surface area and the disappearance of the strong acidic sites typical of HPW nanocrystals, showing all hybrids similar acid sites of weak or medium strength. The activity of the hybrids was tested for direct DME synthesis from syngas at 30 bar and 250 °C; only the hybrids with HPW loading higher than 1.4 monolayers showed activity for the direct synthesis of DME, showing that the sample loaded with 2.7 monolayers of heteropolyacid had higher activity than the reference hybrid representative of the most widely applied catalysts based on the combination of Cu-ZnO(Al) with HZSM-5. In spite of the high activity of the hybrids, they show a moderate loss in the DME production with TOS that denotes some kind of deactivation of the acidity function under reaction conditions.
机译:研究了基于Syngas直接合成二甲醚(DME)的TiO 2与Cu-ZnO(Al)催化剂的双官能混合催化剂的性能杂交催化剂的性能已经研究过来自合成气的二甲醚(DME)。我们研究了HPW加载对TiO 2(从1.4至2.7单层)对HPW簇的分散和酸特性的影响。当杂二极体的浓度略高于单层(1.4单层)时,簇的酸度被二氧化钛的表面扰动,而浓度高于1.7单层导致与酸度相似的三维HPW纳米晶体形成。散装杂酸。用Cu-ZnO(Al)催化剂的负载的杂多酸的物理杂交改变支持的杂多酸的酸性特性和Cu-ZnO(Al)催化剂的铜表面积。杂交产生铜表面积的减少和典型的HPW纳米晶体的强酸位点的消失,显示出杂种相似的弱或中强的酸位点。测试杂种的活性,用于从30巴的合成气直接DME合成,250℃;仅具有高于1.4单层的HPW负荷的杂交种显示了DME的直​​接合成的活性,表明用2.7单层的杂酸的样品具有比基于CU-的组合的基础施用催化剂的参考杂合物更高的活性。 ZnO(Al)与HZSM-5。尽管杂种的活性很高,但它们在DME生产中显示了与TOS的中等损失,表示在反应条件下的酸度函数的某种失活。

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