Institut für Technische und Makromolekulare Chemie (ITMC), RWTH Aachen University, Worringerweg 1, 52074 Aachen, Germany.
ChemSusChem. 2013 Apr;6(4):630-4. doi: 10.1002/cssc.201200931. Epub 2013 Mar 1.
5-Hydroxymethylfurfural (HMF) is a valuable biomass-derived building block. Among possible HMF valorization products, a broad range of HMF esters can be synthesized. These HMF esters have found some promising applications, such as monomers, fuels, additives, surfactants, and fungicides, and thus several catalytic approaches for HMF (trans)esterifications have been reported. The intrinsic reactivity of HMF is challenging, forcing the use of mild reaction conditions to avoid by-product formation. This paper explores the lipase-catalyzed (trans)esterification of HMF with different acyl donors (carboxylic acids and methyl- and ethyl esters) mostly in solvent-free conditions. The results demonstrate that lipases may be promising alternatives for the synthesis of HMF esters-with high productivities and reactions at high substrate loadings-provided that robust systems for lipase immobilization are applied to assure an adequate reusability of the enzymes. Once (trans)esterifications have been conducted, the separation of unreacted HMF and HMF esters is performed by using deep-eutectic solvents (DES) as separation agents. DES are able to dissolve hydrogen-bond donors (e.g., HMF), whereas non-hydrogen-bond donors (in this case HMF esters) form a second phase. By using this approach, high ester purities (>99 %) and efficiencies (up to >90 % HMF ester recovery) in separations were obtained by using choline chloride-based DES.
5-羟甲基糠醛(HMF)是一种有价值的生物量衍生结构单元。在可能的 HMF 增值产品中,可以合成广泛的 HMF 酯。这些 HMF 酯已经找到了一些有前途的应用,例如单体、燃料、添加剂、表面活性剂和杀真菌剂,因此已经报道了几种用于 HMF(转)酯化的催化方法。HMF 的固有反应性具有挑战性,迫使使用温和的反应条件来避免副产物的形成。本文探讨了脂肪酶催化的 HMF 与不同酰基供体(羧酸和甲酯和乙酯)的(转)酯交换反应,主要在无溶剂条件下进行。结果表明,脂肪酶可能是合成 HMF 酯的有前途的替代品-具有高生产率和在高底物负荷下的反应-前提是应用坚固的脂肪酶固定化系统以确保酶的足够可重复使用性。一旦进行了(转)酯化反应,就可以使用深共熔溶剂(DES)作为分离剂来分离未反应的 HMF 和 HMF 酯。DES 能够溶解氢键供体(例如 HMF),而非氢键供体(在这种情况下为 HMF 酯)则形成第二相。通过使用这种方法,基于胆碱氯化物的 DES 可以获得高酯纯度(>99%)和分离效率(高达>90%的 HMF 酯回收)。