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氨基硅材料作为吸附剂,用于从模拟生物油中选择性去除醛和酮。

Aminosilica materials as adsorbents for the selective removal of aldehydes and ketones from simulated bio-oil.

机构信息

School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Dr., Atlanta, GA 30332, USA.

出版信息

ChemSusChem. 2011 Mar 21;4(3):379-85. doi: 10.1002/cssc.201000347. Epub 2011 Jan 18.

Abstract

The fast pyrolysis of biomass is a potential route to the production of liquid biorenewable fuel sources. However, degradation of the bio-oil mixtures due to reaction of oxygenates, such as aldehydes and ketones, reduces the stability of the liquids and can impact long-term storage and shipping. Herein, solid aminosilica adsorbents are described for the selective adsorptive removal of reactive aldehyde and ketone species. Three aminosilica adsorbents are prepared through the reaction of amine-containing silanes with pore-expanded mesoporous silica. A fourth aminosilica adsorbent is prepared through the ring-opening polymerization of aziridine from pore-expanded mesoporous silica. Adsorption experiments with a representative mixture of bio-oil model compounds are presented using each adsorbent at room temperature and 45 °C. The adsorbent comprising only primary amines adsorbs the largest amount of aldehydes and ketones. The overall reactivity of this adsorbent increases with increasing temperature. Additional aldehyde screening experiments show that the reactivity of aldehydes with aminosilicas varies depending on their chemical functionality. Initial attempts to regenerate an aminosilica adsorbent by acid hydrolysis show that they can be at least partially regenerated for further use.

摘要

生物质的快速热解是生产液体生物可再生燃料的一种有潜力的途径。然而,由于醛类和酮类等含氧化合物的反应,生物油混合物的降解会降低液体的稳定性,并可能影响长期储存和运输。本文描述了用于选择性吸附去除反应性醛和酮类物质的固体氨基硅基吸附剂。通过含胺硅烷与孔扩展介孔硅的反应制备了三种氨基硅基吸附剂。通过从孔扩展介孔硅的氮丙啶开环聚合制备了第四种氨基硅基吸附剂。在室温下和 45°C 下,使用每种吸附剂对生物油模型化合物的代表性混合物进行了吸附实验。仅包含伯胺的吸附剂吸附了最多的醛和酮。该吸附剂的整体反应性随温度的升高而增加。额外的醛筛选实验表明,醛与氨基硅基的反应性取决于其化学官能团。通过酸水解再生氨基硅基吸附剂的初步尝试表明,它们可以至少部分再生以供进一步使用。

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