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Reaction of Cu(CN)(3)(2-) with H2O2 in water under alkaline conditions: Cyanide oxidation, Cu+/Cu2+ catalysis and H2O2 decomposition

机译:碱性条件下水中的Cu(CN)(3)(2-)与H2O2反应:氰化物氧化,Cu + / Cu2 +催化和H2O2分解

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摘要

Cuprous cyanide is widely present in electroplating wastewater or metallurgical effluents. In the present study, the destruction of Cu(CN)(3)(2-) with H2O2 in water under alkaline conditions was investigated. H2O2 oxidized the cyanide from Cu(CN)(3)(2-) to cyanate with the formation of Cu(CN)(2)- firstly. Following, the continuous oxidation of cyanide from Cu(CN)(2)- and the attendant dissociation of Cu(CN)(2)- led to progressive liberation of Cu+. Transformation of Cu+ to Cu2+ was confirmed afterward by X-ray photoelectron spectroscopy analysis. Meantime, the center dot OH signal was detected by electron spin resonance assay. It was concluded that Fenton-like reaction occurred between the liberated Cu+ and H2O2. UV-vis spectra studies revealed the formation of superoxo-cupric complex between Cu2+ and H2O2 in alkaline conditions, which decomposed into Cu2+ species and O-2 finally. Thus, how to improve the utilization of H2O2 and enhance the destruction of Cu(CN)(3)(2-) should be considered in the treatment of Cu(CN)(3)(2-) wastewater. (C) 2014 Elsevier B.V. All rights reserved.
机译:氰化亚铜广泛存在于电镀废水或冶金废水中。在本研究中,研究了碱性条件下水中H2O2对Cu(CN)(3)(2-)的破坏作用。 H2O2首先将氰化物从Cu(CN)(3)(2-)氧化为氰酸盐,形成Cu(CN)(2)-。接下来,氰化物从Cu(CN)(2)-的连续氧化和伴随的Cu(CN)(2)-的解离导致Cu +的逐步释放。随后通过X射线光电子能谱分析确认了Cu +向Cu2 +的转化。同时,通过电子自旋共振分析检测到中心点OH信号。结论是释放的Cu +和H2O2之间发生Fenton样反应。紫外可见光谱研究揭示了碱性条件下Cu2 +和H2O2之间形成了超氧-铜络合物,最终分解为Cu2 +物种和O-2。因此,在处理Cu(CN)(3)(2-)废水时应考虑如何提高H2O2的利用率并增强对Cu(CN)(3)(2-)的破坏。 (C)2014 Elsevier B.V.保留所有权利。

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