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Photoelectrocatalytic oxidation of Cu-EDTA complex and electrodeposition recovery of Cu in a continuous tubular photoelectrochemical reactor

机译:连续管式光电化学反应器中Cu-EDTA配合物的光电催化氧化和铜的电沉积回收

摘要

In this paper, a tubular photoelectrocatalytic reactor using the TiO2/Ti mesh anode was designed for the destruction of Cu-EDTA complex and recovery of liberated Cu2+ ions in a continuous mode. Its performance was evaluated in terms of the destruction of the Cu-EDTA and the yield of Cu recovery as a function of the current density, hydraulic residence time, initial pH, and initial Cu-EDTA concentration. The efficiency of Cu recovery and Cu-EDTA destruction were determined to be over 85% and 80% with the current density of 1.13 A m(-2) and the hydraulic residence time of 60 min at pH 3.5. Energy consumed for copper electrodeposition proved to be inversely proportional to the current density. Electrodeposition recovery of Pb ions from its EDTA solutions was possible, but low deposition recovery of Ni, Cd, and Zn was observed. The tubular photoelectrocatalytic reactor shows a high stability and may be scaled up for the destruction of metal-complexes and recovery of the metal ions. (C) 2013 Elsevier B.V. All rights reserved.
机译:本文设计了一种使用TiO2 / Ti网状阳极的管式光电催化反应器,以连续模式破坏Cu-EDTA络合物并回收释放的Cu2 +离子。根据Cu-EDTA的破坏和Cu回收率的变化来评估其性能,该Cu-EDTA是电流密度,水力停留时间,初始pH和初始Cu-EDTA浓度的函数。在1.35 A m(-2)的电流密度和在pH 3.5的水力停留时间为60分钟的条件下,Cu的回收率和Cu-EDTA的破坏效率被确定为超过85%和80%。电沉积铜所消耗的能量与电流密度成反比。可以从其EDTA溶液中电沉积Pb离子,但是观察到Ni,Cd和Zn的低沉积率。管状光电催化反应器显示出高稳定性,并且可以按比例放大以破坏金属络合物和回收金属离子。 (C)2013 Elsevier B.V.保留所有权利。

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