首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Role of copper- or cerium-promoters on NiMo/gamma-Al2O3 catalysts in hydrodeoxygenation of guaiacol and bio-oil
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Role of copper- or cerium-promoters on NiMo/gamma-Al2O3 catalysts in hydrodeoxygenation of guaiacol and bio-oil

机译:铜或铈 - 促进剂对愈高氢脱氧酶中Nimo / Gamma-Al2O3催化剂的作用

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摘要

Effect of copper (Cu) or cerium (Ce) as promoters for nickel-molybdenum/gamma-alumina (NiMo/gamma-Al2O3) catalyst on the hydrodeoxygenation (HDO) of guaiacol (GUA), a model oxygenated compound found in a bio-oil derived from woody biomass, was comparatively investigated. The addition of Cu- or Ce-promoters affected the physicochemical properties of the NiMo catalyst. The NiMo catalyst promoted by Cu showed the higher reducibility, whilst the Ce-promoter (2-8 wt% based on gamma-Al2O3 content) provided the NiMo catalyst with a higher distribution of active metals and induced a greater difficulty in the reduction under hydrogen (H-2) atmosphere. For the HDO of GUA at a mild reaction condition (10 bar initial H-2 pressure and 300 degrees C) in the absence of solvent, the Cu-promoter enhanced the hydrogenation activity of the NiMo catalyst to convert GUA to phenol and methyl phenols, one-atomic oxygen species. Whereas, the addition of Ce obviously inhibited the formation of coke on the catalyst surface after a long reaction period (6 h) and gave a higher GUA conversion level with increasing yield of phenols. For the HDO of real bio-oil obtained from the fast pyrolysis of cassava rhizome, the NiMo catalysts promoted by Cu or Ce at 4 wt% based on the gamma-Al2O3 content showed a higher performance at eliminating the oxygenated compounds in the bio-oil, reducing the oxygen/carbon (O/C) molar ratio by over sevenfold from 1.75 to 0.24-0.25. Moreover, the gross heating value of the bio-oil was improved from 21.5 to ca. 29.0 MJ/kg after the HDO process. However, the addition of the Cu or Ce promoter did not inhibit coke deposition, possibly due to the acidic properties of the bio-oil that deteriorated the catalyst performance by metal leaching.
机译:铜(Cu)或铈(Ce)作为镍 - 钼/γ-氧化铝(Nimo / Gamma-Al2O3)催化剂的促核酸(Gua)的催化剂的促进剂,其在生物中发现的模型含氧化合物源自木质生物质的油相对调查。加入Cu-或Ce-促进剂影响了Nimo催化剂的物理化学性质。由Cu促进的NiMO催化剂显示出较高的还原性,而Ce-启动子(基于γ-Al2O3含量为2-8wt%),则Nimo催化剂具有更高的活性金属分布,并在氢气下诱导更大的难度(H-2)氛围。对于在不存在溶剂的温和反应条件(10巴初始H-2压力和300℃)的GUA的HDO中,Cu-促进剂增强了NiMO催化剂的氢化活性以将GUA转化为苯酚和甲基苯酚,一种原子氧气。然而,在长反应期(6小时)后,添加Ce的添加明显抑制催化剂表面上的焦炭形成,并在增加酚的产率下给出更高的GUA转化水平。对于从木薯根茎的快速解析获得的实际生物油的HDO,基于γ-Al2O3含量的Cu或Ce促进的NiMO催化剂在4wt%的基础上,在消除生物油中的含氧化合物时表现出更高的性能,将氧/碳(O / C)摩尔比从1.75降至0.24-0.25。此外,生物油的总热量值从21.5提高到CA. HDO过程后29.0 MJ / kg。然而,添加Cu或Ce启动子的添加不抑制焦炭沉积,可能是由于生物油的酸性特性,通过金属浸出劣化催化剂性能。

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