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首页> 外文期刊>ChemSusChem >Electrochemical Oxidation of 5-Hydroxymethylfurfural to 2,5-Furandicarboxylic Acid (FDCA) in Acidic Media Enabling Spontaneous FDCA Separation
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Electrochemical Oxidation of 5-Hydroxymethylfurfural to 2,5-Furandicarboxylic Acid (FDCA) in Acidic Media Enabling Spontaneous FDCA Separation

机译:在酸性培养基中实现5-羟甲基糠醛至2,5-呋喃羧酸(FDCA)的电化学氧化,使自发性FDCA分离

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摘要

2,5-Furandicarboxylic acid (FDCA) has become an increasingly desirable platform chemical to replace terephthalic acid in the production of a variety of polymeric materials, including polyethylene terephthalate. FDCA can be produced by the oxidation of 5-hydroxymethylfurfural (HMF), which can be derived from cellulosic biomass. Oxidation of HMF to FDCA is typically performed under basic conditions. Separation of FDCA is most easily accomplished by lowering the pH until FDCA is insoluble and filtering it from solution. In a large-scale process, this would lead to a high operating cost to purchase the required acid and base and to dispose of the resulting salt waste. In this study, electrochemical oxidation of HMF was carried out in acidic media by using a manganese oxide (MnOx) anode to remove the need to vary the pH to separate FDCA. The MnOx anode afforded a FDCA yield of 53.8% in a pH1 H2SO4 solution, in which FDCA precipitation occurred spontaneously from the same reaction solution without altering the pH or other aspects of the solution composition. Electrochemical oxidation in acidic media offers a new pathway to convert HMF into maleic acid, which is another desirable biomass-derived platform molecule. The performance of the MnOx anode was investigated in comparison with that of a Pt anode to identify unique electrocatalytic properties of the MnOx anode for HMF oxidation.
机译:2,5-呋喃羧酸(FDCA)已成为越来期望的平台化学品,以替代对苯二甲酸在生产各种聚合物材料中,包括聚对苯二甲酸乙二醇酯。 FDCA可以通过氧化5-羟甲基糠醛(HMF)来制备,其可以衍生自纤维素生物质。 HMF至FDCA的氧化通常在基本条件下进行。通过降低pH直到FDCA不溶于和从溶液过滤,最容易完成FDCA的分离。在大规模的过程中,这将导致购买所需的酸和碱并处理所得盐废物的高运营成本。在该研究中,通过使用锰氧化物(MNOX)阳极在酸性介质中进行HMF的电化学氧化以除去改变pH以分离FDCA的需要。 MNOX阳极在pH1 H 2 SO 4溶液中得到53.8%的FDCA产率,其中FDCA沉淀从相同的反应溶液自发地发生而不改变溶液组合物的pH或其他方面。酸性介质中的电化学氧化提供了一种将HMF转化为马来酸的新途径,这是另一个理想的生物质衍生的平台分子。研究了与PT阳极的摩染料阳极的性能,以确定用于HMF氧化的MNOX阳极的独特电催化性质。

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