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Cellulose-Based Absorbent Production from Bacterial Cellulose and Acrylic Acid: Synthesis and Performance

机译:细菌纤维素和丙烯酸的纤维素基吸收剂生产:合成和性能

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摘要

Cellulose-based superabsorbent was synthesized by bacterial cellulose (BC) grafting acrylic acid (AA) in the presence of N,N′-methylenebisacrylamide (NMBA) as a crosslinker and ammonium persulfate (APS) as an initiator. The influence of different factors on composite synthesis, including the weight ratio of the monomer to BC, initiator content, crosslinker content, AA neutralization degree, reaction temperature, and reaction time on the water absorbency of the composite, were systematically learned. Under the optimized conditions, the maximum water absorbency of the composite was 322 ± 23 g/g distilled water. However, the water absorbency was much less for the different salt solutions and the absorption capacity of the composite decreased as the concentration of the salt solutions increased. The pH value had a significant influence on water absorption performance, and with the increase of temperature, the water retention rate of the composite decreased. Additionally, the structure of this composite was characterized with nuclear magnetic resonance (NMR), Fourier transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM), and thermogravimetric analysis (TGA). The results of NMR and FT-IR provided evidence that the composite was synthesized by BC and AA, and the microstructure showed that it had good performance for water absorption. In addition, the composite possessed suitable thermal stability, and that it could be used in a few high-temperature environments. Overall, this composite is promising for application in water absorption.
机译:在N,N'-亚甲基双丙烯酰胺(NMBA)作为交联剂和过硫酸铵(APS)作为引发剂的存在下,通过细菌纤维素(BC)接枝丙烯酸(AA)合成纤维素基超吸收剂。系统地了解了单体与BC的重量比,引发剂含量,交联剂含量,AA中和度,反应温度和反应时间等因素对复合材料吸水率的影响。在最佳条件下,复合材料的最大吸水率为322±23 g / g蒸馏水。然而,对于不同的盐溶液,吸水率要小得多,并且随着盐溶液浓度的增加,复合材料的吸收能力降低。 pH值对吸水性能有显着影响,并且随着温度的升高,复合材料的保水率降低。此外,该复合材料的结构通过核磁共振(NMR),傅立叶变换红外光谱(FT-IR),扫描电子显微镜(SEM)和热重分析(TGA)进行了表征。 NMR和FT-IR结果表明,该复合材料是由BC和AA合成的,其微观结构表明其具有良好的吸水性能。另外,该复合材料具有合适的热稳定性,并且可以在一些高温环境中使用。总的来说,这种复合材料有望用于吸水。

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