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Active Carbon Fibers Grown with Manganese Dioxide Nanowires for Highly-Efficient Adsorption of Organic Pollutants from Acidic and Neutral Aqueous Solutions

机译:活性炭纤维与二氧化锰纳米线一起生长,可从酸性和中性水溶液中高效吸附有机污染物

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Removal of organic pollutants from aqueous solution under acidic and neutral surroundings is of great significance, especially for industrial water purification in which the organic compounds were involved in acidic water, such as dyes in printing wastewater. The design of efficient adsorbents which can continuously give highly-efficient adsorption performance towards organic pollutants in low-pH value aqueous solutions is a great challenge. Here, we report a concept that combines conventional materials with chemically-stable nanomaterials to address this issue. In our investigation, activated carbon fibers (ACFs) were grown with dense manganese dioxide (MnO2) nanowires, which were found to possess good adsorbing properties to organic pollutants in both acidic and neutral aqueous solutions. The adsorbents were prepared via a facile hydrothermal route based on the in situ redox reaction of potassium permanganate on ACFs without using any other oxidant or reductant additions. The ACFs not only serve as a sacrificial reductant, but also used as a substrate for MnO2 nanowires growth. In adsorbing measurements, methyl orange was employed as organic pollutant probe. The effect of pH value, kinetics adsorption process under a pH value of 3, and isothermal models were investigated. The adsorption behavior well fits with typical Freundlich adsorption model. Furthermore, the adsorption capacity can be retained higher than 90% after five adsorption cycles. Our findings can be promising for developing a large variety of efficient and stable adsorbents by combining conventional materials with nanostructures for water purification applications.
机译:在酸性和中性环境下从水溶液中去除有机污染物具有重要意义,特别是对于工业用水净化而言,其中有机化合物与酸性水有关,例如印刷废水中的染料。在低pH值水溶液中,能够连续地对有机污染物提供高效吸附性能的高效吸附剂的设计是一个巨大的挑战。在这里,我们报告了将传统材料与化学稳定的纳米材料相结合的概念,以解决此问题。在我们的研究中,活性炭纤维(ACF)与致密的二氧化锰(MnO2)纳米线一起生长,发现它们在酸性和中性水溶液中均具有对有机污染物的良好吸附性能。基于高锰酸钾在ACF上的原位氧化还原反应,通过便捷的水热途径制备了吸附剂,而无需使用任何其他氧化剂或还原剂。 ACF不仅用作牺牲还原剂,而且还用作MnO2纳米线生长的基质。在吸附测量中,使用甲基橙作为有机污染物探针。研究了pH值的影响,pH值为3时的动力学吸附过程以及等温模型。吸附行为与典型的Freundlich吸附模型非常吻合。此外,在五个吸附循环后,吸附容量可保持高于90%。通过将常规材料与纳米结构相结合以用于水净化应用,我们的发现对于开发各种有效而稳定的吸附剂具有广阔的前景。

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