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用于从水溶液中回收二醇、糖醇和糖的功能性苯硼酸聚合物。

Functional Phenylboronate Polymers for the Recovery of Diols, Sugar Alcohols, and Saccharides from Aqueous Solution.

机构信息

Chair of Heterogeneous Catalysis and Chemical Technology, RWTH Aachen University, Worringerweg 2, 52074, Aachen, Germany.

Institute of Organic Chemistry, University of Würzburg, Am Hubland, 97074, Würzburg, Germany.

出版信息

ChemSusChem. 2021 Dec 6;14(23):5207-5215. doi: 10.1002/cssc.202002887. Epub 2021 May 5.

Abstract

The ongoing transition from fossil to renewable feedstocks demands new efficient processes for an economically viable production of biomass-derived commodities and fine chemicals. Novel energy- and material-efficient product purification and separation will play a crucial role due to altered product and feed composition. The present study comprises the synthesis and tests of cross-linked p-vinylphenylboronate polymers for the separation of 18 diols, sugar alcohols, and saccharides, which can be obtained during biomass processing. The separation was based on molecular recognition, that is, esterification of the phenylboronate with vicinal diols. A correlation of the molecular complexation constant, the polymer swelling, and the maximum adsorption capacity was found. The adsorption curves over time were recorded. Preliminary results on competitive adsorption of binary mixtures showed a high potential for the separation of substrates with significantly different complexation constants. Desorption tests implied easier desorption of substrates that only adsorb on the outer polymer shell.

摘要

从化石原料向可再生原料的持续转变要求开发新的高效工艺,以经济可行的方式生产生物质衍生的商品和精细化学品。由于产品和进料组成的改变,新型的节能和节省材料的产品净化和分离将发挥至关重要的作用。本研究包括交联对乙烯基苯硼酸酯聚合物的合成和测试,用于分离在生物质加工过程中可获得的 18 种二醇、糖醇和糖。分离基于分子识别,即苯硼酸酯与顺式二醇的酯化反应。发现了分子络合常数、聚合物溶胀和最大吸附容量之间的相关性。记录了随时间的吸附曲线。二元混合物竞争吸附的初步结果表明,对于具有显著不同络合常数的底物的分离具有很高的潜力。解吸测试表明,仅吸附在外聚合物壳上的底物更容易解吸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a132/9291334/67533c784c8f/CSSC-14-5207-g004.jpg

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