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Bio-oils Hydrodeoxygenation: Adsorption of Phenolic Molecules on Oxidic Catalyst Supports

机译:生物油加氢脱氧:酚类分子在氧化催化剂载体上的吸附

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The interaction of phenol, anisole, and guaiacol, representatives of oxygenate functions present in pyrolysis bio-oils, with oxides such as silica, alumina (pure or doped with K or F), and silica-alumina is investigated by infrared spectroscopy. While phenolic type compounds mainly interact via H-bonding with silica, chemisorption is their main mode of adsorption on alumina. Besides, guaiacol interacts very strongly by forming doubly anchored phenates instead of monoanchored ones with phenol and anisole. At temperatures typical of hydrodeoxygenation (HDO) operating conditions (~673 K), the phenate type species cover 2/3 of the alumina surface. This study clearly indicates that substantial carbon deposition could take place on alumina-supported HDO catalysts. Hence, this suggests that silica-based supports should be considered as potential candidates to design HDO catalyst with better stability.
机译:热解生物油中存在的含氧化合物功能代表苯酚,茴香醚和愈创木酚与诸如二氧化硅,氧化铝(纯净或掺有K或F的氧化物)和二氧化硅-氧化铝的氧化物之间的相互作用已通过红外光谱法进行了研究。酚类化合物主要通过氢键与二氧化硅相互作用,而化学吸附是它们在氧化铝上的主要吸附方式。此外,愈创木酚通过形成双锚定的酚盐而不是与苯酚和苯甲醚的单锚定酚盐发生非常强的相互作用。在典型的加氢脱氧(HDO)操作条件下(约673 K),酚盐类物质覆盖氧化铝表面的2/3。该研究清楚地表明,在氧化铝负载的HDO催化剂上可能发生大量的碳沉积。因此,这表明基于二氧化硅的载体应被认为是设计具有更好稳定性的HDO催化剂的潜在候选者。

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