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Effective removal of Cr(VI) through adsorption and reduction by magnetic mesoporous carbon incorporated with polyaniline

机译:通过结合聚苯胺的磁性介孔碳吸附和还原有效去除六价铬

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摘要

Magnetic mesoporous carbon incorporated with polyaniline (PANI-Fe/OMC) is developed for enhanced adsorption and reduction of toxic Cr(VI) to non-toxic Cr(III). Several physicochemical techniques including TEM, FTIR and XPS analyses confirmed that magnetic iron nanoparticles and amino groups have been successfully bound on the mesoporous matrix. The adsorption capacity of the functionalized material is two-and ten-fold that of the magnetic mesoporous carbon (Fe/OMC) and pristine mesoporous silicon (SBA-15), respectively. Solution pH exhibited a remarkable impact on the Cr(VI) adsorption and the maximum uptake amount (172.33 mg g(-1)) occurred at pH 2.0. The good fitting of adsorption process using pseudo-second-order and Langmuir models indicated the chemisorption process of Cr(VI) removal. The regeneration study revealed that PANI-Fe/OMC can be reused without loss of their activity in repetitive adsorption tests. Moreover, the resultant adsorbent can be effectively applied in actual wastewater treatment due to the excellent removal performance in fixed-bed column and real water samples. The interaction between Cr(VI) and PANI-Fe/OMC was investigated by FTIR and XPS analyses. The results indicate that the amino groups on the surface of PANI-Fe/OMC are involved in Cr(VI) uptake, and simultaneously some toxic Cr(VI) are reduced to non-toxic Cr(III) during the removal process.
机译:与聚苯胺(PANI-Fe / OMC)结合的磁性介孔碳被开发用于增强吸附和将有毒Cr(VI)还原为无毒Cr(III)。包括TEM,FTIR和XPS分析在内的多种物理化学技术证实,磁性铁纳米颗粒和氨基已成功结合在中孔基质上。功能化材料的吸附能力分别是磁性中孔碳(Fe / OMC)和原始中孔硅(SBA-15)的两倍和十倍。溶液的pH值对Cr(VI)的吸附表现出显着影响,最大吸收量(172.33 mg g(-1))在pH 2.0时发生。使用拟二阶和Langmuir模型对吸附过程的良好拟合表明了Cr(VI)去除的化学吸附过程。再生研究表明,在重复吸附试验中,PANI-Fe / OMC可以重复使用而不会损失其活性。此外,由于固定床色谱柱和真实水样中的优异去除性能,所得吸附剂可有效地应用于实际废水处理。通过FTIR和XPS分析研究了Cr(VI)与PANI-Fe / OMC之间的相互作用。结果表明,PANI-Fe / OMC表面的氨基与Cr(VI)的吸收有关,同时在去除过程中一些有毒的Cr(VI)被还原为无毒的Cr(III)。

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