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首页> 外文期刊>International Journal of Polymer Science >Time Dependent Influence of Rotating Magnetic Field on Bacterial Cellulose
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Time Dependent Influence of Rotating Magnetic Field on Bacterial Cellulose

机译:旋转磁场对细菌纤维素的时间依赖性影响

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摘要

The aim of the study was to assess the influence of rotating magnetic field (RMF) on the morphology, physicochemical properties, and the water holding capacity of bacterial cellulose (BC) synthetized by Gluconacetobacter xylinus. The cultures of G. xylinus were exposed to RMF of frequency that equals 50 Hz and magnetic induction 34 mT for 3, 5, and 7 days during cultivation at 28°C in the customized RMF exposure system. It was revealed that BC exposed for 3 days to RMF exhibited the highest water retention capacity as compared to the samples exposed for 5 and 7 days. The observation was confirmed for both the control and RMF exposed BC. It was proved that the BC exposed samples showed up to 26% higher water retention capacity as compared to the control samples. These samples also required the highest temperature to release the water molecules. Such findings agreed with the observation via SEM examination which revealed that the structure of BC synthesized for 7 days was more compacted than the sample exposed to RMF for 3 days. Furthermore, the analysis of 2D correlation of Fourier transform infrared spectra demonstrated the impact of RMF exposure on the dynamics of BC microfibers crystallinity formation.
机译:该研究的目的是评估旋转磁场(RMF)对木糖葡糖杆菌合成的细菌纤维素(BC)的形态,理化性质和持水量的影响。在定制的RMF暴露系统中于28°C下培养期间,木霉菌的培养物暴露于等于50 Hz的RMF频率和34 mT的磁感应强度下进行了3、5和7天。结果表明,与暴露5天和7天的样品相比,暴露于RMF 3天的BC表现出最高的保水能力。对照和暴露于RMF的BC均得到证实。证明与对照样品相比,暴露于BC的样品显示出高达26%的保水量。这些样品还需要最高温度才能释放出水分子。这些发现与通过SEM检查的观察结果一致,该结果表明,合成7天的BC的结构比暴露于RMF 3天的样品更紧密。此外,傅立叶变换红外光谱的二维相关性分析表明,RMF暴露对BC超细纤维结晶形成动力学的影响。

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