首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Removal of p-nitrophenol (PNP) in aqueous solution by the micron-scale iron-copper (Fe/Cu) bimetallic particles
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Removal of p-nitrophenol (PNP) in aqueous solution by the micron-scale iron-copper (Fe/Cu) bimetallic particles

机译:微米级铁铜(Fe / Cu)双金属颗粒去除水溶液中的对硝基苯酚(PNP)

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摘要

In this study, in order to further investigate the degradation capacity and mechanism of Fe/Cu bimetallic system, the prepared Fe/Cu bimetallic particles with different theoretical copper mass loadings (0.05, 0.11,0.24,0.41,0.62,0.89,1.26 and 1.81 g Cu/g Fe) were characterized by SEM, EDS, XRD and laser particle size analyzer. Also, the effect of theoretical Cu mass loading and five key operating parameters on the PNP removal efficiency was investigated thoroughly. Furthermore, the mineralization process of PNP was studied by using COD, TOC, UV-vis spectra, FTIR spectra and GC/MS. The results show that a large number of fine Cu particles were produced from the excessive theoretical Cu mass loading, and they facilitated the catalytic reactivity of the Fe/Cu bimetallic particles at Cu loading <0.89 g Cu/g Fe. Additionally, the heterogeneous Cu layer is also favor for the catalytic reactivity of the Fe/Cu bimetallic particles, while the uniform and dense Cu layer can decrease its reactivity severely. The degradation rates of PNP by the Fe/Cu particles with different theoretical Cu mass loadings are all in accordance with the pseudo-first-order kinetics model, and the optimal operating parameters were obtained by the batch experiments. In addition, both the indirect reduction by atomic hydrogen and the direct reduction on the catalytic activity sites play a leading role on the pollutants removal. Finally, the degradation pathway of PNP was proposed according to the detected intermediates by GC/MS. Collectively, these results suggest that the Fe/Cu bimetallic system should be proposed as a cost-effective pretreatment process for the toxic and refractory PNP wastewater.
机译:为了进一步研究Fe / Cu双金属体系的降解能力及其机理,本文制备了具有不同理论铜负载量的Fe / Cu双金属颗粒(0.05、0.11,0.24、0.41,0.62、0.89、1.26和1.81通过SEM,EDS,XRD和激光粒度分析仪对每克铜/克铁进行了表征。此外,还深入研究了理论铜负载量和五个关键操作参数对PNP去除效率的影响。此外,利用COD,TOC,UV-vis光谱,FTIR光谱和GC / MS研究了PNP的矿化过程。结果表明,过量的理论铜负载量会产生大量细小的Cu颗粒,并且在Cu负载<0.89 g Cu / g Fe时,它们促进了Fe / Cu双金属颗粒的催化反应性。另外,非均质Cu层也有利于Fe / Cu双金属颗粒的催化反应性,而均匀且致密的Cu层会严重降低其反应性。不同理论铜负载量的Fe / Cu颗粒对PNP的降解速率均符合拟一级动力学模型,并通过分批实验获得了最佳操作参数。此外,原子氢的间接还原和催化活性位点的直接还原在污染物去除中都起着主导作用。最后,根据GC / MS检测到的中间体,提出了PNP的降解途径。总而言之,这些结果表明,应建议使用Fe / Cu双金属系统作为有毒和难处理的PNP废水的经济有效的预处理方法。

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