首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Silica/titania composite-supported Ni catalysts for CO methanation: Effects of Ti species on the activity, anti-sintering, and anti-coking properties
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Silica/titania composite-supported Ni catalysts for CO methanation: Effects of Ti species on the activity, anti-sintering, and anti-coking properties

机译:二氧化硅/二氧化钛复合负载的Ni催化剂用于CO甲烷化:Ti种类对活性,抗烧结和抗结焦性能的影响

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Catalysts composed of Ni supported on SiO2/TiO2 composite oxides (ST) with different Si/Ti molar ratios have been prepared by an ultrasonic impregnation method and used in CO methanation. Experimental results show that the ST systems have large specific surface area, large pore volume, and offer suitable metal-support interactions, thereby facilitating the dispersion of Ni. Indeed, these catalysts have more suitable Ni active sites for methanation, and the composite oxides show good support and synergistic effects. Thus, Ni/STx (x = 50, 10, 5, 1) with a Ni loading of 10 wt% displayed higher catalytic performances relative to catalysts composed of Ni supported on individual oxides (SiO2, TiO2, and gamma-Al2O3). Among the catalysts, 10Ni/ST5 displayed the best catalytic activity (370 degrees C, CO conversion: 99.9%, CH4 selectivity: 95.6%). Furthermore, 10Ni/ST5 showed better CH4 yield (290 degrees C, CH4 yield: 92.4%), anti-sintering properties (smaller Ni particles), and anti -coking properties (lower amount of deposited carbon) after a stability test of duration 144h at 600 degrees C than those of a typical 10Ni/gamma-Al2O3 catalyst (290 degrees C, CH4 yield: 80.0%). This can be attributed to the optimal amount of TiO2 separating/separated from the ST5 and playing the role of an electronic promoter. It not only effectively facilitated the dispersion of Ni during sintering, but also triggered electron transfer and enhanced the electron cloud density of Ni (Ni-00 -> Ni delta-), thereby weakening the C-O bond of Ni-C-O and enhancing the dissociation of CO. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过超声浸渍法制备了由Ni负载在SiO2 / TiO2复合氧化物(ST)上的Ni组成的催化剂,所述SiO2 / TiO2复合氧化物具有不同的Si / Ti摩尔比,并将其用于CO甲烷化。实验结果表明,ST体系具有大的比表面积,大的孔体积,并提供合适的金属-载体相互作用,从而促进了Ni的分散。实际上,这些催化剂具有更合适的用于甲烷化的Ni活性位,并且复合氧化物显示出良好的载体和协同作用。因此,相对于由负载在单个氧化物(SiO 2,TiO 2和γ-Al2 O 3上)的Ni组成的催化剂,Ni负载量为10 wt%的Ni / STx(x = 50、10、5、1)显示出更高的催化性能。在这些催化剂中,10Ni / ST5表现出最佳的催化活性(370℃,CO转化率:99.9%,CH4选择性:95.6%)。此外,经过144h的稳定性测试后,10Ni / ST5表现出较好的CH4收率(290摄氏度,CH4收率:92.4%),抗烧结性能(较小的Ni颗粒)和抗结焦性能(沉积的碳含量较低)在600摄氏度下比典型的10Ni /γ-Al2O3催化剂(290摄氏度,CH4收率:80.0%)高。这可以归因于从ST5分离/分离的TiO2的最佳量,并起着电子助催化剂的作用。它不仅有效地促进了烧结过程中Ni的分散,而且触发了电子转移,提高了Ni的电子云密度(Ni-00-> Ni delta-),从而削弱了Ni-CO的CO键,增强了Ni的解离。 CO。(C)2016 Elsevier BV保留所有权利。

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