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Solid Phase Extraction of Bio-Oil Model Compounds and Lignin-Derived Bio-Oil Using Amine-Functionalized Mesoporous Silicas

机译:使用胺官能化的介孔二氧化硅的生物油模型化合物和木质素衍生生物油的固相提取

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摘要

Lignin-derived pyrolysis bio-oils are a rich source of alkylphenols that could find application if a feasible separation method could be developed. In this work, bio-oil model compounds and lignin-derived bio-oil were used to evaluate commercially available silica gel and normal phase amine-functionalized silica, as well as three different amine-functionalized mesoporous silicas, as adsorbents. The adsorption capacities of all materials at maximum retention of 12 bio-oil model compounds were compared. Catechol showed maximum retention (193.3 mg/g, 1.75 mmol/g) in the presence of the best mesoporous absorbent, while bulkier guaiacol and benzophenone did not show any retention. The best adsorbent was also applied for the separation of three groups of phenolic compounds present in the lignin-derived bio-oil, as determined by GC/MS analysis, namely, (i) methoxyphenols and alkylmethoxyphenols, (ii) phenol, alkylphenols, and hydroxyacids, and (iii) catechol. Adsorption studies showed that grafted triamine-functionalized mesoporous silica exhibited the best performance in separation of phenol-based compounds from bio-oils.
机译:木质素衍生的热解生物油是一种富含烷基酚的富含烷基酚,如果可以开发可行的分离方法,则可以找到应用。在这项工作中,使用生物油模型化合物和木质素衍生的生物油来评估市售的硅胶和正常相胺官能化二氧化硅,以及三种不同的胺官能化的中孔二氧化硅作为吸附剂。比较了所有材料的吸附容量最大限度地保持12种生物油模型化合物。在最佳介孔吸收剂存在下,儿茶酚显示出最大的保留(193.3mg / g,1.75mmol / g),而Bulkier Guaiacol和二苯甲酮没有显示任何保留。也适用于通过GC / MS分析测定的木质素衍生的生物油中存在的三组酚类化合物的分离,即(I)甲氧基苯酚和烷基甲氧基苯酚,(II)苯酚,烷基酚和羟基酸和(III)儿茶酚。吸附研究表明,接枝的三胺官能化的介孔二氧化硅表现出在生物油中分离酚类化合物的最佳性能。

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