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首页> 外文期刊>ACS Omega >Clean Production of Levulinic Acid from Fructose and Glucose in Salt Water by Heterogeneous Catalytic Dehydration
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Clean Production of Levulinic Acid from Fructose and Glucose in Salt Water by Heterogeneous Catalytic Dehydration

机译:通过异质催化脱水,清洁来自盐水中果糖和葡萄糖的乙酰丙酸的生产

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Levulinic acid (LA) is considered to be one of the promising organic bio-platform chemicals and intermediates for the synthesis of fuels, chemicals, and polymers. In the present study, heterogeneous catalytic dehydration of hexose sugars, fructose and glucose, using a strong cation exchange resin (hydrogen form) as an acid catalyst, was performed to produce LA in an aqueous medium. The effect of salts such as NaCl, KCl, CaCl_(2), Na_(2)CO_(3), and Na_(2)SO_(4) in the medium on the rate of sugar conversion and LA yield was evaluated. Under optimum reaction conditions, 10% (w/w) fructose was dehydrated to LA (with 74.6% yield) in 10% (w/w) NaCl aqueous solution in 24 h at 110 °C using the catalyst at 30% (w/w sugar). Even 10% (w/w) glucose monohydrate was directly dehydrated to LA (with 70.7% yield) under similar conditions but at 145 °C. This study shows that the salts enhance the rate of catalytic dehydration in the order of Cl~(–) > CO_(3)~(2–) > SO_(4)~(2–). Thus, the combination of high sugar concentration and heterogeneous catalysis in an aqueous system under relatively mild conditions could provide a high-yielding and sustainable process for bio-based LA production.
机译:乙酰丙酸(LA)被认为是有可能的有机生物平台化学品和用于合成燃料,化学品和聚合物的中间体之一。在本研究中,在水性介质中进行使用强阳离子交换树脂(氢形式)作为酸催化剂的己糖糖,果糖和葡萄糖的异质催化脱水。评价盐等盐的效果,评价培养基中培养基中糖转化率和LA产率的培养基中的Na_(2)CaCl_(3)和Na_(2)SO_(4)。在最佳反应条件下,在110℃下,在110℃下以30%(w /),将10%(w / w)在10%(w / w)NaCl水溶液中脱水至La(含量为74.6%的产率)在110℃下(W /瓦糖)。甚至10%(w / w)葡萄糖一水合物在相似条件下直接脱水至La(产率70.7%),但在145℃下。该研究表明,盐以Cl〜( - )> CO_(3)〜(2-)> SO_(4)〜(2-)的催化脱水速率提高了催化脱水速率。因此,在相对温和的条件下,水性体系中的高糖浓度和异质催化的组合可以为生物基LA生产提供高产和可持续的方法。

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