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Efficient Hydrogenolysis of Guaiacol over Highly Dispersed Ni/MCM-41 Catalyst Combined with HZSM-5

机译:高分散Ni / MCM-41催化剂与HZSM-5结合对愈创木酚的高效氢解

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A series of MCM-41 supported Ni catalysts with high metal dispersion was successfully synthesized by simple co-impregnation using proper ethylene glycol (EG). The acquired Ni-based catalysts performed the outstanding hydrogenolysis activity of guaiacol. The effects of the synthesis parameters including drying temperature, calcination temperature, and metal loading on the physical properties of NiO nanoparticles were investigated through the use of X-ray diffraction (XRD). The drying temperature was found to significantly influence the particle sizes of NiO supported on MCM-41, but the calcination temperature and metal loading had less influence. Interestingly, the small particle size (≤3.3 nm) and the high dispersion of NiO particles were also obtained for co-impregnation on the mixed support (MCM-41:HZSM-5 = 1:1), similar to that on the single MCM-41 support, leading to excellent hydrogenation activity at low temperature. The guaiacol conversion could reach 97.9% at 150 °C, and the catalytic activity was comparative with that of noble metal catalysts. The hydrodeoxygenation (HDO) performance was also promoted by the introduction of acidic HZSM-5 zeolite and an 84.1% yield of cyclohexane at 240 °C was achieved. These findings demonstrate potential applications for the future in promoting and improving industrial catalyst performance.
机译:通过使用适当的乙二醇(EG)进行简单的共浸渍,成功地合成了一系列具有高金属分散度的MCM-41负载的Ni催化剂。所获得的Ni基催化剂表现出了愈创木酚的出色的氢解活性。通过X射线衍射(XRD)研究了包括干燥温度,煅烧温度和金属负载量在内的合成参数对NiO纳米粒子物理性能的影响。发现干燥温度显着影响负载在MCM-41上的NiO的粒度,但是煅烧温度和金属负载的影响较小。有趣的是,还获得了小粒径(≤3.3nm)和高分散度的NiO颗粒,用于在混合载体上共浸渍(MCM-41:HZSM-5 = 1:1),类似于在单个MCM上-41载体,在低温下具有出色的氢化活性。在150°C时,愈创木酚的转化率可达到97.9%,其催化活性与贵金属催化剂相当。引入酸性HZSM-5沸石也可提高加氢脱氧(HDO)性能,并在240°C时达到84.1%的环己烷收率。这些发现证明了将来在促进和改善工业催化剂性能方面的潜在应用。

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