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The Influence of Lignin Diversity on the Structural and Thermal Properties of Polymeric Microspheres Derived from Lignin Styrene and/or Divinylbenzene

机译:木质素多样性对木质素苯乙烯和/或二乙烯基苯衍生的聚合物微球结构和热性能的影响

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摘要

This work investigates the impact of lignin origin and structural characteristics, such as molecular weight and functionality, on the properties of corresponding porous biopolymeric microspheres obtained through suspension-emulsion polymerization of lignin with styrene (St) and/or divinylbenzene (DVB). Two types of kraft lignin, which are softwood (Picea abies L.) and hardwood (Eucalyptus grandis), fractionated by common industrial solvents, and related methacrylates, were used in the synthesis. The presence of the appropriate functional groups in the lignins and in the corresponding microspheres were investigated by attenuated total reflectance Fourier transform infrared spectroscopy (ATR/FT-IR), while the thermal properties were studied by differential scanning calorimetry (DSC). The texture of the microspheres was characterized using low-temperature nitrogen adsorption. The swelling studies were performed in typical organic solvents and distilled water. The shapes of the microspheres were confirmed with an optical microscope. The introduction of lignin into a St and/or DVB polymeric system made it possible to obtain highly porous functionalized microspheres that increase their sorption potential. Lignin methacrylates created a polymer network with St and DVB, whereas the unmodified lignin acted mainly as an eco-friendly filler in the pores of St-DVB or DVB microspheres. The incorporation of biopolymer into the microspheres could be a promising alternative to a modification of synthetic materials and a better utilization of lignin.
机译:这项工作研究了木质素来源和结构特征(如分子量和功能性)对木质素与苯乙烯(St)和/或二乙烯基苯(DVB)的悬浮乳液聚合获得的相应多孔生物聚合物微球性能的影响。在合成中使用了两种类型的硫酸盐木质素,分别是普通工业溶剂分馏的软木(Picea abies L.)和硬木(Eucalyptus grandis)以及相关的甲基丙烯酸酯。通过衰减全反射傅里叶变换红外光谱(ATR / FT-IR)研究木质素和相应微球中适当官能团的存在,同时通过差示扫描量热法(DSC)研究热性能。使用低温氮吸附来表征微球的织构。溶胀研究在典型的有机溶剂和蒸馏水中进行。用光学显微镜确认微球的形状。将木质素引入St和/或DVB聚合物体系使得有可能获得高度多孔的官能化微球,其增加了其吸附潜力。甲基丙烯酸木质素可与St和DVB形成聚合物网络,而未改性的木质素则主要在St-DVB或DVB微球的孔隙中充当生态友好的填料。将生物聚合物掺入微球可能是合成材料改性和木质素更好利用的有前途的替代方法。

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