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首页> 外文期刊>Advanced Sustainable Systems >Self‐Thickening and Self‐Strengthening 3D Printing Magnetic Cellulose‐Based Aerogel for Adsorption and Recovery of Methylene Blue
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Self‐Thickening and Self‐Strengthening 3D Printing Magnetic Cellulose‐Based Aerogel for Adsorption and Recovery of Methylene Blue

机译:自我的增厚和自我增强3 d打印磁性纤维素气凝胶为基础吸附亚甲蓝和恢复

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摘要

Abstract 3D printing of biomass has attracted increasing attention and can meet the requirements of various practical applications. Herein, 3D printing of a cellulose‐based aerogel is achieved by direct ink writing based on a self‐thickening and self‐strengthening strategy, followed by freezing drying. The magnetic cellulose‐based aerogels (MCAs) containing Fe3O4 nanoparticles are ideal adsorbents for adsorbing and removing organic pollutants from water. As catchers and carriers for magnetic removal, MCAs (Fe3O4 nanoparticles and cellulose) provide large active sites, which allows organic pollution to be quickly and stably bound on the surface. The adsorption effect of methylene blue (MB) is dependent on pH and the removal efficiency of MB (5.6 mg l‐1, pH = 9) is 88.5% for MCA, which occurs almost instantaneously at room temperature. In addition, the collected aerogel‐MB hybrid can be reactivated by acid‐washing (pH = 3) without obvious changes in the adsorption performance of MCA. The MCA exhibits a fast, efficient and sustainable removal of organic pollutants, which provides an inexpensive and recyclable method for water remediation.
机译:抽象的3 d打印生物质吸引了越来越多的关注,可以满足各种实际应用的要求。在此,基于一个纤维素气凝胶的3 d打印是通过直接的墨水写基于吗自我的增厚和自我检测——加强策略,其次是冻干。基于纤维素量包含Fe3O4气凝胶(mca)纳米粒子是理想的吸附剂吸附并从水中去除水中的有机污染物。除磁捕手和运营商,差异(Fe3O4纳米颗粒和纤维素)提供活跃的网站,它允许有机污染快速和稳定的表面。亚甲蓝(MB)的吸附效果依赖于pH值和MB的去除效率(5.6毫克l高1在pH = 9) MCA, 88.5%以迅雷不及掩耳之势出现在房间温度。气凝胶MB混合可以重新激活酸量洗涤(pH = 3)没有明显的变化MCA的吸附性能。展示一个快速、高效和可持续的去除有机污染物,这提供了一个水的廉价和可回收的方法补救。

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