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首页> 外文期刊>Journal of Catalysis >Pd-Modified Cu-Zn Catalysts for Methanol Synthesis from CO_2/H_2 Mixtures: Catalytic Structures and Performance
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Pd-Modified Cu-Zn Catalysts for Methanol Synthesis from CO_2/H_2 Mixtures: Catalytic Structures and Performance

机译:用于CO_2 / H_2混合物合成甲醇的Pd改性Cu-Zn催化剂:催化结构和性能

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摘要

The effect of palladium incorporation on the performance of a CuO-ZnO catalyst for methanol synthesis by hydrogenation of carbon dioxide is studied. Three different catalysts are prepared: the reference CuO-ZnO (CZ), and two Pd-based CuO-ZnO catalysts, PCZ-CP and PCZ-SP, which are prepared by co-precipitation and sequential precipitation, respectively. The PCZ-CP system appears to the base CZ catalyst. The marked decrease in the catalytic activity of the PCZ-CP catalyst is explained in terms of the loss in copper surface area. The effect of Pd is not capable of overcoming this significant loss in copper surface area. The enhanced methanol yield for PCZ-SP is not due to additional active palladium sites, but to a synergetic effect of Pd on the active Cu sites. The increase in the amount of hydrogen consumed (H_2/M) during copper oxide reduction for PCZ-SP suggests that an H_2-spillover mechanism is responsible for the increase in the methanol yield. This resea4rch reveals the importance of the mthodology used for the incorporation of palladium. The results show that the precipitation order has a remarkable influence on the properties of the active phases and, consequently, on the catalytic performance for the hydrogenation of CO_2 to methanol.
机译:研究了钯的掺入对通过二氧化碳加氢合成甲醇的CuO-ZnO催化剂性能的影响。制备了三种不同的催化剂:参考CuO-ZnO(CZ)和两种分别基于共沉淀和连续沉淀法制备的Pd基CuO-ZnO催化剂PCZ-CP和PCZ-SP。对于基础CZ催化剂而言,PCZ-CP系统似乎很重要。 PCZ-CP催化剂的催化活性显着下降是根据铜表面积的损失来解释的。 Pd的作用无法克服铜表面积上的这一重大损失。 PCZ-SP的甲醇收率提高不是由于额外的活性钯位点,而是由于Pd对活性Cu位点的协同作用。在PCZ-SP的氧化铜还原过程中,氢消耗量(H_2 / M)的增加表明,H_2溢出机制是甲醇收率增加的原因。该研究揭示了用于掺入钯的方法学的重要性。结果表明,沉淀顺序对活性相的性质有显着影响,因此,对CO_2加氢制甲醇的催化性能有显着影响。

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