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A highly efficient magnetic chitosan 'fluid' adsorbent with a high capacity and fast adsorption kinetics for dyeing wastewater purification

机译:具有高容量和快速吸附动力学的高效磁性壳聚糖“液体”吸附剂,用于染色废水净化

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摘要

A novel magnetic fluid adsorbent (magnetic chitosan "fluid", MCF) was prepared via a one-step in situ co-precipitation procedure using inexpensive and environmentally friendly chitosan (CS) and iron precursor. The resultant ultrafine colloid was characterized using transmission electron microscopy (TEM), X-ray powder diffraction (XRD), thermogravimetric analysis (TGA), and Fourier transform infrared spectroscopy (FTIR). The sorption and desorption characteristics of the composite were studied using a common Congo Red (CR) anionic dye to evaluate the suitability of the MCF for anionic dye wastewater purification. As an important advantage, the dye adsorption could be achieved in a wide alkaline pH range and reached the equilibrium within 5 min demonstrating the superior properties of our material compared the previously reported CS-based adsorbents. The adsorption obeyed the Langmuir isotherm model with the remarkable maximum adsorption capacity of approx. 1700 mg/g for CR under neutral pH. NaOH treatment was utilized to desorb and regenerate MCF, while the removal rate still remained above 90% after recycling five times, demonstrating that the MCF could be employed for repeated use without significant capacity loss. MCF could be readily separated from water within 30 s under a low magnetic field (0.035 T). Overall, the ultrafine colloidal state of the synthesized MCF enabled a rapid pollutant uptake, high adsorption capacity, and reusability. The above characteristics of MCF and its environmentally friendly composition make it a very promising material for practical dyeing wastewater purification.
机译:通过使用廉价和环保的壳聚糖(CS)和铁前体,通过一步的原位共沉淀方法制备新的磁性流体吸附剂(磁性壳聚糖“流体”,MCF)。使用透射电子显微镜(TEM),X射线粉末衍射(XRD),热重分析(TGA)和傅里叶变换红外光谱(FTIR)表征所得超细胶体。使用常见的刚果红(Cr)阴离子染料研究复合材料的吸附和解吸特性,以评估MCF对阴离子染料废水纯化的适用性。作为一个重要的优点,可以在宽碱性pH范围内实现染料吸附,并在5分钟内达到平衡,证明了先前报道的基于Cs的吸附剂的优异性能。吸附遵循了Langmuir等温模型,具有卓越的最大吸附能力。中性pH下的Cr 1700 mg / g。 NaOH处理用于解吸和再生MCF,而再循环仍然仍然保​​持在90%以上,仍然在五次后仍然保持在90%以上,表明MCF可以用于反复使用而无需显着容量损失。可以在低磁场(& 0.035t)下的30秒内随水处分离MCF。总体而言,合成MCF的超细胶体状态能够快速污染物吸收,高吸附容量和可重用性。上述MCF及其环保组合物的特点使其成为实际染色废水净化的非常有希望的材料。

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