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Efficient Catalytic Upgrading of Levulinic Acid into Alkyl Levulinates by Resin-Supported Acids and Flow Reactors

机译:树脂负载的酸和流动反应器有效地催化戊酸转化为烷基戊酸酯

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Biomass-derived levulinic acid (LA) is an excellent substrate to obtain high-value esters that can be used as second-generation biofuels and biofuel additives. The present study focuses on the identification and definition of the key parameters crucial for the development of chemically and environmentally efficient protocols operating in continuous-flow for the preparation of structurally diverse alkyl levulinates via the esterification of LA. We have focused on the use of solid acid catalysts consisting of sulfonated cation exchange resins and considered different aliphatic alcohols to prepare levulinates 3 and 11–17 regioselectively, and in good to high yields (50–92%). Direct correlations between several reaction parameters and catalyst activity have been investigated and discussed to set proper flow reactors that allow minimal waste production during the workup procedure, enabling Environmental factor (E-factor) values as low as ca. 0.3, full recoverability and reusability of the catalysts, and the production of levulinates up to ca. 5 gxh ?1 scale.
机译:生物质衍生的乙酰丙酸(LA)是获得高价值酯的优良基质,可用作第二代生物燃料和生物燃料添加剂。本研究的重点是确定和定义关键参数的关键参数,这些关键参数对于开发连续流操作的化学和环境有效方案至关重要,以通过LA的酯化反应制备结构多样的乙酰丙酸烷基酯。我们专注于使用由磺化阳离子交换树脂组成的固体酸催化剂,并考虑使用不同的脂肪族醇选择性地制备乙酰丙酸酯3和11-17,并以高至高收率(50-92%)制备。已经研究和讨论了几个反应参数与催化剂活性之间的直接相关性,以设置合适的流动反应器,以使在后处理过程中产生的废物最少,从而使环境因子(E-factor)值可低至约。 0.3,催化剂的完全可回收性和可重复使用性,以及乙酰丙酸酯的生产量最高可达5 gxh±1刻度。

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