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Biomass Vanillin-Derived Polymeric Microspheres Containing Functional Aldehyde Groups: Preparation, Characterization, and Application as Adsorbent

机译:含有功能性醛基的生物质香兰素衍生的聚合物微球:制备,表征和应用作为吸附剂。

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The contribution reports the first polymeric microspheres derived from a biomass, vanillin. It reacted with methacryloyl chloride, providing monomer vanillin methacrylate (VMA.), which underwent suspension polymerization in aqueous media and yielded microspheres in high yield (>90 wt %). By controlling the N-2 bubbling mode and by optimizing the cosolvent for dissolving the solid monomer, the micro spheres were endowed with surface pores, demonstrated by SEM images and mercury intrusion porosimetry measurement. Taking advantage of the reactive aldehyde groups, the microspheres further reacted with glycine, thereby leading to a novel type of Schiff-base chelating material. The functionalized microspheres demonstrated remarkable adsorption toward Cu2+ (maximum, 135 mg/g) which was taken as representative for metal ions. The present study provides an unprecedented class of biobased polymeric microspheres, showing large potentials as adsorbents in wastewater treatment. Also importantly, the reactive aldehyde groups may enable the microspheres to be used as novel materials for immobilizing biomacromolecules, e.g. enzymes.
机译:该论文报道了最早衍生自生物质香草醛的聚合物微球。它与甲基丙烯酰氯反应,得到单体甲基丙烯酸香兰素(VMA。),将其在水性介质中进行悬浮聚合,并以高产率(> 90 wt%)得到微球。通过控制N-2的鼓泡模式和优化用于溶解固体单体的助溶剂,微球被赋予了表面孔,这通过SEM图像和压汞法进行了证明。利用反应性醛基,微球进一步与甘氨酸反应,从而导致新型的席夫碱螯合材料。功能化的微球表现出对Cu2 +的显着吸附(最大135 mg / g),该吸附被视为金属离子的代表。本研究提供了前所未有的一类生物基聚合物微球,显示出在废水处理中作为吸附剂的巨大潜力。同样重要的是,反应性醛基可以使微球体用作固定生物大分子的新材料,例如生物大分子。酶。

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