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首页> 外文期刊>Chemosphere >Copper-based catalyst from waste printed circuit boards for effective Fenton-like discoloration of Rhodamine B at neutral pH
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Copper-based catalyst from waste printed circuit boards for effective Fenton-like discoloration of Rhodamine B at neutral pH

机译:废印刷电路板中的铜基催化剂可在中性pH下有效地使罗丹明B像芬顿一样有效地脱色

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摘要

The carbonized waste printed circuit board (c-PCB) was used as novel copper-based catalyst for Fenton-like discoloration of Rhodamine B (RhB). The elemental ingredients, structure and morphology of the catalyst was investigated by multi-techniques. The catalytic activity of c-PCB for RhB discoloration was evaluated in the presence of H2O2, examining the factors of catalyst dosage, H(2)O(2 )dosage, solution pH, RhB concentration and temperature. RhB discoloration is improved with increasing catalyst dosage (0 -2.0 gL(-1)), H(2)O(2)dosage (0-0.15 mol L-1), solution pH (4.66-9.36) and temperature (30-50 degrees C). We found that c-PCB shows excellent catalytic activity for RhB discoloration in a broad pH range. RhB removal of 95.78% is obtained within 6 hat neutral pH (6.70). RhB discoloration is well described by the first-order kinetics, and the activation energy is calculated to be 87 kJ mol(-1). The dominant role of center dot OH radical in the c-PCB/H(2)O(2 )system is identified by quenching tests. The plausible pathway for RhB discoloration is discussed based on the time-dependent UV-vis spectra. The possible catalytic mechanism in the c-PCB/H(2)O(2)system is also presented. Good reusability of c-PCB is verified by three cycles. This work opens a new strategy of "waste treating waste", facilitating management of hazardous solid wastes and cleaner treatment of textile wastewater. (C) 2019 Elsevier Ltd. All rights reserved.
机译:碳化废印刷电路板(c-PCB)用作新型铜基催化剂,用于罗丹明B(RhB)的Fenton样变色。通过多种技术研究了催化剂的元素组成,结构和形态。在H2O2存在下评估c-PCB对RhB褪色的催化活性,检查催化剂用量,H(2)O(2)剂量,溶液pH,RhB浓度和温度的因素。 RhB变色可通过增加催化剂用量(0 -2.0 gL(-1)),H(2)O(2)剂量(0-0.15 mol L-1),溶液pH(4.66-9.36)和温度(30- 50摄氏度)。我们发现c-PCB在较宽的pH范围内对RhB变色显示出优异的催化活性。在6个帽子中性pH值(6.70)内,去除了95.78%的RhB。 RhB变色由一阶动力学很好地描述,并且活化能经计算为87 kJ mol(-1)。中心点OH自由基在c-PCB / H(2)O(2)系统中的主导作用通过淬灭测试确定。基于时间相关的紫外可见光谱讨论了RhB脱色的合理途径。还介绍了在c-PCB / H(2)O(2)系统中可能的催化机理。三个循环验证了c-PCB的良好可重用性。这项工作开启了“废物处理”的新战略,从而促进了危险固体废物的管理和纺织品废水的清洁处理。 (C)2019 Elsevier Ltd.保留所有权利。

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