首页> 外文期刊>Journal of nanoscience and nanotechnology >Efficient Technique for Simultaneous Lead Recovery and PbO2/Ti Electrode Preparation for Electrocatalytic Degradation of Basic Red
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Efficient Technique for Simultaneous Lead Recovery and PbO2/Ti Electrode Preparation for Electrocatalytic Degradation of Basic Red

机译:同时铅回收和PBO2 / Ti电极制剂的高效技术,用于碱性红色的电催化降解

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In order to achieve the effective removal of Pb2+ from low-concentration wastewater as well as the lead recovery for direct reuse simultaneously, a simple electrodeposition method was used in this study. In this process, synthetic lead wastewater with low concentration of 4, 8, 12 and 16 mg/L was treated, more than 67% lead was recovered from wastewater and a PbO2/Ti electrode was fabricated in a simple reaction tank. The test results of characterizations confirmed that PbO2 nano-eletrocatalyst was successfully deposited on a Ti substrate. Electrochemical activity tests indicated that PbO2/Ti electrode had advantages of high oxygen evolution potential (1.90 V) and low electron transfer resistance. Furthermore, the results of electrocatalytic degradation experiments demonstrated that prepared PbO2/Ti electrode had the superb decolorization and mineralization ability on Basic Red. After 120 min of electrolysis, the Basic Red removal efficiency and TOC removal efficiency could reach to 89.38% and 68.82%, respectively, which was 5.2 and 7.1 times higher than the Ti substrate alone. Besides, the calculated mineralization current efficiency for PbO2/Ti electrode increased from 5.18% to 36.74% after PbO2 depositing, and thus an economical benefit was obtained by more than 5 times energy saving. The influences of the applied current density, initial dye concentration, electrolyte concentration and solution pH on the oxidation efficiency were also investigated and optimized. The prepared PbO2/Ti electrode also showed a great stability with high dye removal efficiency (above 85%) after 10 times repeated experiments. These results suggest that it is a promising technological process to remove and recover lead from low-concentration wastewater efficiently and reuse them as electrocatalyst for other organic wastewater treatments.
机译:为了实现从低浓度废水的有效去除PB2 +,以及同时直接再利用的铅回收,本研究使用简单的电沉积方法。在该方法中,处理具有低浓度为4,8,12和16mg / L的合成铅废水,从废水中回收超过67%的铅,在简单的反应槽中制造PBO 2 / Ti电极。表征的测试结果证实,PBO2纳米电催化剂成功沉积在Ti底物上。电化学活性试验表明,PbO2 / Ti电极具有高氧气进化电位(1.90V)和低电子转移性的优点。此外,电催化降解实验的结果证明,制备的PBO 2 / Ti电极具有碱性红色的脱色和矿化能力。在电解120分钟后,基本的红色去除效率和TOC去除效率分别达到89.38%和68.82%,其单独比Ti底物高5.2和7.1倍。此外,PBO2 / Ti电极的计算矿化电流效率从PBO 2沉积后的5.18%增加到36.74%,因此通过节能5倍以上获得经济效益。还研究了应用电流密度,初始染料浓度,电解质浓度和溶液pH对氧化效率的影响。在重复实验10次后,制备的PBO 2 / Ti电极还具有高染料去除效率(高于85%)的稳定性。这些结果表明,它是一种有望的技术过程,可有效地从低浓度废水中脱离和恢复,并将其重用为其他有机废水处理的电催化剂。

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