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Production of Adipic Acid from Sugar Beet Residue by Combined Biological and Chemical Catalysis

机译:通过组合生物和化学催化从甜菜残留物中生产己二酸

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Adipic acid is one of the most important industrial dicarboxylic acids and is used mainly as a precursor to nylon-6,6. Currently, commercial adipic acid is produced primarily from benzene by a chemical route that is associated with environmental, health, and safety concerns. Herein, we report a new process to produce adipic acid from an inexpensive renewable feedstock, sugar beet residue by combining an engineered Escherichia coli strain and Re-based chemical catalysts. The engineered E.coli converted d-galacturonic acid to mucic acid, which was precipitated easily with acid, and the mucic acid was further converted to adipic acid by a deoxydehydration reaction catalyzed by an oxorhenium complex followed by a Pt/C-catalyzed hydrogenation reaction under mild conditions. A high selectivity to the free acid products was achieved by tuning the acidity of the Re-based catalysts. Finally, adipic acid was produced directly from sugar beet residue that was hydrolyzed enzymatically with engineered E.coli and two chemical catalysts in a yield of 8.4%, which signifies a new route for the production of adipic acid.
机译:己二酸是最重要的产业二羧酸之一,主要用于尼龙-6,6的前体。目前,商业己二酸主要由与环境,健康和安全问题相关的化学路线产生的。在此,我们通过组合工程化的大肠杆菌菌株和重新基化学催化剂来报告一种新的方法,从廉价的可再生原料,甜菜残留物中生产脂肪甜菜残留物。工程化的大肠杆菌转化为粘性的D-半乳糖醛酸,用酸容易地沉淀,并且通过氧化氢气络合物催化的脱氧醛反应,杂酸进一步转化为己二酸,然后进行Pt / C催化的氢化反应在温和的条件下。通过调节重新催化剂的酸度来实现对游离酸产物的高选择性。最后,己二酸直接由糖甜菜残基生产,其用工程化的大肠杆菌和两种化学催化剂以8.4%的产率酶化,这表示己二酸生产的新途径。

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