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The use of CoMoS catalysts supported on carbon-coated alumina for hydrodeoxygenation of guaiacol and oleic acid

机译:负载在碳包覆氧化铝上的CoMoS催化剂用于愈创木酚和油酸的加氢脱氧

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The objective of the work was to elucidate the effect of coating alumina by carbon on the catalytic properties of CoMoS catalysts supported on carbon-coated alumina (CCA) in hydrodeoxygenation (HDO) reactions. The catalysts were synthesized using 12-molybdophosphoric heteropolyacid, cobalt citrate and CCA and characterized by N-2 physisorption, temperature-programmed desorption of ammonia, high-resolution transmission electron microscopy and X-ray photoelectron spectroscopy. The catalytic properties were determined using a fixed-bed microreactor in HDO of guaiacol and oleic acid. It was found that using the CCA as supports of the CoMo/CCA catalysts altered the morphology and structure of the CoMoS active phase species. With the increase of carbon content up to 5.6 wt.%, the average length of CoMoS species passed through minimum at 2.4 nm and the average stacking number increased from 1.4 to 1.6. The increase of carbon content in the CCA led to rising the sulphidation degree of both metals and effective cobalt content into CoMoS phase. Using CCA supports instead of alumina for preparation of CoMo catalysts resulted in improving their activities in HDO of guaiacol and oleic acid and significantly reduced deactivation. Enhanced catalytic properties of CoMo/Cx/Al2O3 catalysts were related to lower acidity of CCA supports. CoMo/CCA catalyst with 2 wt.% of carbon had maximal activity in HDO of guaiacol and oleic acid thanks to an optimal balance between cobalt content into CoMoS phase particles and their average length. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项工作的目的是阐明用碳涂覆氧化铝对加氢脱氧(HDO)反应中负载在碳涂层氧化铝(CCA)上的CoMoS催化剂的催化性能的影响。该催化剂是用12钼磷杂多酸,柠檬酸钴和CCA合成的,其特征在于N-2物理吸附,程序升温的氨解吸,高分辨率透射电子显微镜和X射线光电子能谱。使用在愈创木酚和油酸的HDO中的固定床微反应器测定催化性能。已经发现使用CCA作为CoMo / CCA催化剂的载体改变了CoMoS活性相物质的形态和结构。随着碳含量增加到5.6 wt。%,CoMoS物种的平均长度在2.4 nm处最小,平均堆积数从1.4增加到1.6。 CCA中碳含量的增加导致两种金属的硫化度和进入CoMoS相的有效钴含量的增加。使用CCA载体代替氧化铝制备CoMo催化剂可提高其在愈创木酚和油酸的HDO中的活性,并显着减少失活。 CoMo / Cx / Al2O3催化剂的增强催化性能与降低CCA载体的酸度有关。碳含量为2%(重量)的CoMo / CCA催化剂在愈创木酚和油酸的HDO中具有最大的活性,这归因于CoMoS相颗粒中钴的含量与其平均长度之间的最佳平衡。 (C)2015 Elsevier B.V.保留所有权利。

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