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High yield aldose-ketose transformation for isolation and facile conversion of biomass sugar to furan

机译:高产醛糖-酮糖转化技术,可分离生物质糖并将其轻松转化为呋喃

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摘要

Traditional approaches to producing furfural from C5 biomass sugars have several limitations which include high reaction temperatures/pressures, significant sugar loss to side-reactions, modest furfural yields, and high purification costs. We present a novel method for converting the C5 sugar xylose to furfural at facile conditions in very high yield. In this approach, we isomerize xylose to its ketose isomer in high yield via a simultaneous-isomerization-and-reactive-extraction (SIRE) scheme, concentrate and purify xylulose by back-extraction (BE) into an acid medium, and then rapidly dehydrate the xylulose sugar to furfural at relatively low temperature (~110 °C) with no additional catalyst. To our knowledge, production of furfural from concentrated xylulose (30 g I-1) has not been reported previously; this is likely due to the difficulty of producing relatively large quantities of high-purity xylulose in a cost-effective manner. Through simple strategies, such as addition of an aprotic solvent to the aqueous medium or in situ extraction of furfural during the dehydration, furfural yields of up to 90% were achieved. The mild process conditions associated with each of the steps in the process (SIRE, BE and dehydration), along with the ability to concentrate the incoming sugar stream and recycle process streams and catalysts, results in minimal chemical and energy inputs and have a significant favorable impact on the overall process economics.
机译:由C5生物质糖生产糠醛的传统方法具有几个局限性,包括高反应温度/压力,显着的副反应糖损失,适中的糠醛收率和高纯化成本。我们提出了一种在简便条件下以非常高的产率将C5糖木糖转化为糠醛的新方法。在这种方法中,我们通过同时异构化和反应萃取(SIRE)方案以高收率将木糖异构化成其酮糖异构体,通过反萃取(BE)浓缩和纯化木酮糖到酸性介质中,然后快速脱水在相对较低的温度下(〜110°C)将木酮糖转化为糠醛,无需额外的催化剂。据我们所知,以前从未报道过用浓缩的木酮糖(30 g I-1)生产糠醛。这可能是由于难以以成本有效的方式生产相对大量的高纯度木酮糖。通过简单的策略,例如在水性介质中添加非质子溶剂或在脱水过程中原位萃取糠醛,糠醛收率可高达90%。与过程中的每个步骤(SIRE,BE和脱水)相关的温和过程条件,以及浓缩进入的糖料流以及循环过程料流和催化剂的能力,可实现最少的化学和能量输入,并且具有显着的优势对整个过程的经济影响。

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