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首页> 外文期刊>International Journal of Photoenergy >Removal of Textile Dyes from Aqueous Solution by Heterogeneous Photo-Fenton Reaction Using Modified PAN Nanofiber Fe Complex as Catalyst
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Removal of Textile Dyes from Aqueous Solution by Heterogeneous Photo-Fenton Reaction Using Modified PAN Nanofiber Fe Complex as Catalyst

机译:改性PAN纳米纤维铁配合物催化非均相光-Fenton反应去除水溶液中的纺织染料。

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The modified PAN nanofiber Fe complex was prepared by the amidoximation and Fe coordination of PAN nanofiber was obtained using electrospinning technique and then used for the heterogeneous Fenton degradation of textile dyes as a novel catalyst. Some main factors affecting dye degradation such as Fe content of catalyst, irradiation intensity, H2O2initial concentration, the solution pH as well as dye structure, and initial concentration were investigated. UV-Vis spectrum analysis and TOC measurement were also used to evaluate the dye degradation process. The results indicated that the modified PAN nanofiber Fe complex exhibited a much better catalytic activity for the heterogeneous Fenton degradation of textile dyes than the Fe complex prepared with conventional PAN yarns in the dark or under light irradiation. Increasing Fe content of catalyst or irradiation intensity would accelerate the dye degradation. And the highest degradation efficiency was obtained with 3.0 mmol L−1H2O2at pH 6. Moreover, this complex was proved to be a universal and efficient catalyst for degradation of three classes of textile dyes including azo dye, anthraquinone dye, and triphenylmethane dye. Additionally, the dye mineralization was also significantly enhanced in the presence of this complex.
机译:通过酰胺化反应制备了改性的PAN纳米纤维铁配合物,采用静电纺丝技术获得了PAN纳米纤维的Fe配位,然后用于纺织染料的非均相Fenton降解,作为新型催化剂。研究了影响染料降解的一些主要因素,例如催化剂的Fe含量,辐照强度,H2O2初始浓度,溶液的pH值以及染料结构和初始浓度。 UV-Vis光谱分析和TOC测量也用于评估染料降解过程。结果表明,改性的PAN纳米纤维Fe络合物在暗色或光照射下比传统PAN纱线制备的Fe络合物对纺织染料的异质Fenton降解表现出更好的催化活性。催化剂中铁含量或辐照强度的增加将加速染料的降解。在pH值为3.0的条件下,用3.0 mmol L-1H2O2可获得最高的降解效率。此外,该络合物被证明是降解偶氮染料,蒽醌染料和三苯甲烷染料三类纺织染料的通用高效催化剂。另外,在这种配合物的存在下,染料的矿化作用也显着增强。

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