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Synthesis and Modification by Carbonization of Styrene–Ethylene Glycol Dimethacrylate–Lignin Sorbents and their Sorption of Acetylsalicylic Acid

机译:苯乙烯 - 乙二醇二甲基丙烯酸乙烯酸酯 - 木质素吸附剂的合成和改性及其吸附乙酰山氨基酸

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摘要

This paper deals with the synthesis and studies of new polymer microspheres properties based on ethylene glycol dimethylacrylate (EGDMA), styrene (St), and various quantities of commercial kraft lignin (L). In the first stage of the investigations, the conditions of the synthesis process were optimized by selecting a proper amount of poly (vinyl alcohol), which was a suspension stabilizer. Next, based on EGDMA + St + L, new polymers were synthesized by the suspension polymerization method. The chemical structure of the materials was confirmed by means of the Attenuated Total Reflectance—Fourier Transform Infrared (ATR-FTIR) analysis. The evaluation of the synthesized materials includes susceptibility to swelling in solvents of different character (polar and nonpolar), porous structure of microspheres, and their thermal resistance. Morphology has been specified by the scanning electron microscope and automated particle size, as well as shape analyzer. The obtained pictures confirmed the spherical shape of the materials. The microspheres porosity was characterized using the low-temperature nitrogen adsorption. To increase the porosity (partially blocked by the large lignin molecule), the microspheres (EGDMA + St + 4L copolymer) were impregnated with the aqueous solution of the activating substance (sulphuric acid, nitric acid, phosphorous acid, and silver nitrate) and then carbonized at 400 °C. After the carbonization process, the increase in the specific surface area was observed. The microspheres were porous with a specific surface area up to 300 m2/g. The materials had a desirable feature for their potential use in chromatography, which was confirmed by the results of GC analysis with the acetylsalicylic acid. These materials are an interesting alternative in the field of more environmentally friendly, ecological, and biodegradable polymeric sorbents in comparison to the commonly applied styrene-divinylbenzene (St-DVB) copolymers.
机译:这与合成纸优惠和研究的基于乙二醇二甲基丙烯酸酯(EGDMA)新高分子微球的特性,苯乙烯(St),和商业的牛皮纸各种量木质素(L)。在调查的第一阶段中,合成过程的条件,通过选择聚适量(乙烯醇),这是一个悬浮稳定剂进行了优化。接下来,基于EGDMA + ST + L,新聚合物是通过悬浮聚合方法来合成。该材料的化学结构通过衰减全反射 - 傅立叶变换红外(ATR-FTIR)分析证实。合成的材料的评估包括易感性不同的字符(极性和非极性),微球的多孔结构,它们的耐热性的溶剂溶胀。形态已经由扫描型电子显微镜和自动颗粒大小,以及形状分析器指定。将所得到的图像确认的材料的球形形状。使用低温氮吸附的微球的孔隙率进行表征。为了增加孔隙率(部分地由较大的木质素分子阻断),微球(EGDMA + ST + 4L共聚物)与所述激活物质的水溶液(硫酸,硝酸,亚磷酸,和硝酸银)中浸渍,然后在400℃下碳化。碳化处理后,观察到在比表面积的增加。该微球是多孔的,具有的比表面积高达300米2 /克。该材料具有所希望的特征为它们在色谱的潜在用途,其通过GC分析用的乙酰水杨酸的结果证实。这些材料相比,通常应用的苯乙烯 - 二乙烯基苯(ST-DVB)共聚物中的更加环境友好的,生态的,和可生物降解的聚合物吸附剂领域一个有趣的选择。

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