首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >The synthesis of NdFeB magnetic activated carbon and its application in degradation of azo dye methyl orange by Fenton-like process
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The synthesis of NdFeB magnetic activated carbon and its application in degradation of azo dye methyl orange by Fenton-like process

机译:类Fenton法合成NdFeB磁性活性炭及其在偶氮染料甲基橙降解中的应用

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In this paper, the magnetic NdFeB-activated carbon Fenton catalyst (NdFeB-AC-FC) was synthesized by negative pressure impregnation method. The results of magnetite susceptibility measurement show that the NdFeB-AC-FC had hard magnetic properties. Its saturated magnetization, remanent magnetism and coercive force were 18.11 emu/g, 5.7 emu/g, and 905 Oe, respectively. The surface morphology and elementary composition test results show that the specific area and Fe content of NdFeB-AC-FC have been significantly improved by negative pressure impregnation treatment. The feasibility of the NdFeB-AC-FC as catalyst in heterogeneous Fenton-like process has been studied by degrading the simulated dye wastewater. The results show that the NdFeB-AC-FC not only had splendid catalytic activity, but also had reused feasibility in heterogeneous Fenton-like process. Under the optimum conditions ([methyl orange (MO)]_0 = 20 mg/L, temperature = 20 °C, [NdFeB-AC-FC]0 = 10 g/L, [H_2O_2]0 = 0.6 mmol/L and pH = 3.0), MO degradation ratio also could reach 97.1% after 5 cycles. In addition, the results of kinetics study show that the catalytic degradation process follows the pseudo-first order kinetics model. In a word, the catalyst has a good application prospect and it could provide a new technique to solve organic industrial wastewater pollution.
机译:本文采用负压浸渍法合成了磁性钕铁硼活化碳芬顿催化剂(NdFeB-AC-FC)。磁铁矿磁化率测量结果表明,NdFeB-AC-FC具有硬磁性能。其饱和磁化强度,剩余磁强度和矫顽力分别为18.11 emu / g,5.7 emu / g和905 Oe。表面形态和元素组成测试结果表明,NdFeB-AC-FC的比表面积和Fe含量通过负压浸渍处理得到了显着改善。通过降解模拟染料废水,研究了NdFeB-AC-FC在非均相类Fenton工艺中作为催化剂的可行性。结果表明,NdFeB-AC-FC不仅具有出色的催化活性,而且在非均相的Fenton样过程中具有重复利用的可行性。在最佳条件下([甲基橙(MO)] _ 0 = 20 mg / L,温度= 20°C,[NdFeB-AC-FC] 0 = 10 g / L,[H_2O_2] 0 = 0.6 mmol / L和pH = 3.0),在5个循环后,MO降解率也可以达到97.1%。此外,动力学研究的结果表明,催化降解过程遵循伪一级动力学模型。总之,该催化剂具有良好的应用前景,可以为解决有机工业废水污染提供一种新技术。

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