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Magnetically Functionalized Moss Biomass as Biosorbent for Efficient Co2+ Ions and Thioflavin T Removal

机译:磁官能化苔藓生物量作为生物吸附剂用于高效CO2 +离子和硫蛋白T去除

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摘要

Microwave synthesized iron oxide nanoparticles and microparticles were used to prepare a magnetically responsive biosorbent from Rhytidiadelphus squarrosus moss for the rapid and efficient removal of Co2+ ions and thioflavin T (TT). The biocomposite was extensively characterized using Fourier transformed infrared (FTIR), XRD, SEM, and EDX techniques. The magnetic biocomposite showed very good adsorption properties toward Co2+ ions and TT e.g., rapid kinetics, high adsorption capacity (218 μmol g−1 for Co and 483 μmol g−1 for TT), fast magnetic separation, and good reusability in four successive adsorption–desorption cycles. Besides the electrostatic attraction between the oxygen functional moieties of the biomass surface and both Co2+ and TT ions, synergistic interaction with the –FeOH groups of iron oxides also participates in adsorption. The obtained results indicate that the magnetically responsive biocomposite can be a suitable, easily separable, and recyclable biosorbent for water purification.
机译:微波合成的氧化铁纳米颗粒和微粒用于从Rhytidiadelphus squarrosus苔藓中制备磁反应性生物吸附剂,以快速有效地去除CO 2 +离子和硫蛋白T(TT)。使用傅里叶变换的红外(FTIR),XRD,SEM和EDX技术广泛表征生物复合材料。磁性生物复合材料向CO 2 +离子和TT表示非常良好的吸附性能,例如,快速动力学,高吸附容量(用于CO和483μmolG-1的218μmolG-1,对于TT),快速磁分离,在四次连续吸附中的良好可重用性 - 过度循环。除了生物质表面的氧官能部分和CO 2 +和TT离子之间的静电吸引之外,与铁氧化物的-FeOH基团的协同相互作用也参与吸附。所得结果表明,磁响应性的生物复合材料可以是适用的,可易于可分泌的和可回收的水净化的生物吸附剂。

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