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基于己二酸副产物的聚酯多元醇催化合成与相对分子质量调控

Catalytic Synthesis and Molecular Weight Regulation of Polyester Polyols based on Adipic Acid By-products

  • 摘要: 己二酸生产过程中产生的混合二元酸副产物的高值化利用,长期受限于分离成本高、转化效率低等瓶颈。文章构建了一种绿色高效的催化转化体系:(1)在温和条件(70 ℃,常压)下,采用强酸性阳离子交换树脂催化酯化反应,制备高纯度二元酸二甲酯(DBE),纯度高达99.95%;(2)基于三乙醇胺与钛酸四异丙酯配位构建的络合催化体系,促进了DBE与1,4–丁二醇或1,5–戊二醇的酯交换–缩聚反应,合成了一系列相对分子质量可调(1000~5000)的聚酯多元醇。所得聚酯多元醇具有优异的柔韧性、相容性和反应活性。该催化体系不仅为工业副产品的资源化利用提供了创新策略,且反应条件温和、催化效率高,为绿色化学制造提供了可规模化的解决方案。

     

    Abstract: The high-value utilization of mixed dibasic acid by-products produced during the production of adipic acid has long been limited by bottlenecks such as high separation costs and low conversion efficiency. This article constructed a green and high-efficient catalytic conversion system: (1) Under mild conditions (70 °C, atmospheric pressure), a strong acid cation exchange resin was used to catalyze the esterification reaction to prepare high-purity dimethyl dibasic acid ester (DBE) with a purity of up to 99.95%; (2) The complex catalytic system constructed based on the coordination of triethanolamine with tetraisopropyl titanate promoted the ester exchange-polycondensation reaction of DBE with 1,4-butanediol or 1,5-pentanediol, and synthesized a series of polyester polyols with adjustable relative molecular weights (1000~5000). The obtained polyester polyols possessed excellent flexibility, compatibility and reactivity. This catalytic system not only provides an innovative strategy for the resource utilization of industrial by-products, but also has mild reaction conditions and high catalytic efficiency, offering a scalable solution for green chemical manufacture.

     

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