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Nanoparticle Impregnation Treatment of Natural Fiber for Functional Biocomposites

机译:纳米粒子浸渍处理功能生物复合材料的天然纤维

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This research presents a novel in situ nanoparticle impregnation treatment of the lignocellulosic fibers for functional composite products. Unlike other synthetic fibers (glass fibers, carbon fibers, etc.), the cell wall structure of cellulosic fibers contains many micropores, where the nanophase can be easily deposited into. This technique takes advantage of the porous structure of the cellulosic fibers permitting the nanophases to be more evenly distributed into the resulted products. By the impregnation treatment of the cellulosic fiber with different nanophases (such as noble metals, iron, iron oxides, and etc.), the resulted products will present certain functions, such as magnetic, anti static, anti radiation, anti permeation, anti microbial, and etc. While directly impregnating the commercial nanoparticles into the cellulosic fibers can be difficult and costly, the in situ nanophase impregnation technique is to introduce the ionic liquids into the micropore structure of the cellulosic fibers consecutively. When a precursor applies at certain conditions (such as increasing the temperature), the impregnated chemicals react inside the micrpores of the fibers and to form the desired nanoparticles. The presentation uses the iron oxide nanoparticle impregnation as an example, describes a magnetizing process of natural fiber through the in situ nanoparticle impregnation treatment to create magnetic composite panel product for different applications, such as signal shielding panel. The presentation also discusses a novel magnetic activated carbon product through the in situ nanoparticle treatment technology.
机译:该研究提出了一种新型原位纳米粒子浸渍处理,用于函数复合产品的木质纤维素纤维。与其他合成纤维(玻璃纤维,碳纤维等)不同,纤维素纤维的细胞壁结构含有许多微孔,其中纳米相可以容易地沉积到。该技术利用纤维素纤维的多孔结构,允许纳米纤维更均匀地分布到所产生的产物中。通过用不同纳米碱基(如贵金属,铁,氧化铁等)的浸渍处理,所得到的产品将出现某些功能,例如磁性,抗静电,抗辐射,抗渗透,抗微生物等等。在直接浸渍商业纳米颗粒进入纤维素纤维中的同时可以难以且昂贵地浸渍,原位纳米浸渍技术是将离子液体引入纤维素纤维的微孔结构中,连续地将其引入纤维素纤维的微孔结构中。当前体在某些条件下施加(例如增加温度)时,浸渍的化学物质在纤维的显微孢子内反应并形成所需的纳米颗粒。呈现使用氧化铁纳米颗粒浸渍作为示例,描述了天然纤维通过原位纳米颗粒浸渍处理的磁化过程,以产生用于不同应用的磁性复合板产品,例如信号屏蔽板。该介绍还通过原位纳米粒子处理技术讨论了一种新型磁性活性炭产物。

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