首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Mesoporous zirconia-based mixed oxides as versatile acid catalysts for producing bio-additives from furfuryl alcohol and glycerol
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Mesoporous zirconia-based mixed oxides as versatile acid catalysts for producing bio-additives from furfuryl alcohol and glycerol

机译:介孔氧化锆基混合氧化物作为多功能酸催化剂,用于由糠醇和甘油生产生物添加剂

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Mesostructured zirconium-based mixed oxides (MZM) are versatile solid acid catalysts for the chemical valorisation of biomass, within sugar and fatty acid platforms of biorefineries. MZM catalysts contain-ing tungsten and/or aluminium were prepared via a templating route that allows the texture and acid properties to be improved. Their catalytic potential was explored for synthesising different types of interesting oxygenated fuel bio-additives, specifically levulinate esters, furfuryl alkyl ethers and glyc-erol acetals of the type 1,3-dioxolane and 13-dioxane. Levulinate esters are synthesised from furfuryl alcohol (FA), which is produced industrially from lignocelluloses; the acetals are obtained from glycerol which is a coproduct of the industrial production of biodiesel. The performances of the MZM catalysts have been compared with those of zirconium-(tungsten and/or aluminium) mixed oxides synthesised-via conventional co-precipitation (without a template). Structure-activity relationships were established which reveal advantages of the templating route used for the synthesis of the MZM catalysts. The MZM catalysts were more active and led to higher total yields of bio-additives (e.g. up to 86% yield at 100% FA conversion, 140 °C, 30 min reaction) than the catalysts prepared by co-precipitation (e.g. up to 45% yield at 88% FA conversion), under similar reaction conditions. Detailed catalytic and characterisation studies were carried out for the used catalysts.
机译:介孔结构的锆基混合氧化物(MZM)是通用的固体酸催化剂,用于生物精炼厂的糖和脂肪酸平台内生物质的化学增值。含有钨和/或铝的MZM催化剂是通过模板方法制备的,该模板方法可以改善质构和酸性质。为合成不同类型的有趣的含氧燃料生物添加剂,特别是乙酰丙酸酯,糠基烷基醚和1,3-二氧戊环和13-二氧六环的甘油-乙缩醛,人们探索了它们的催化潜力。糠酸酯由糠醇(FA)合成,糠醇是工业上由木质纤维素生产的。乙缩醛得自甘油,后者是生物柴油工业化生产的副产品。已将MZM催化剂的性能与通过常规共沉淀法合成的锆(钨和/或铝)混合氧化物的性能(无模板)进行了比较。建立了构效关系,揭示了用于合成MZM催化剂的模板路线的优势。 MZM催化剂比通过共沉淀制备的催化剂(例如,最多45种)具有更高的活性,并导致更高的生物添加剂总收率(例如,在100%FA转化,140°C,30分钟反应下,产率高达86%)。在相似的反应条件下,在88%的FA转化率下,收率可达5%。对所用催化剂进行了详细的催化和表征研究。

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