首页> 外文期刊>Journal of Cleaner Production >Improved degradation of diuron herbicide and pesticide wastewater treatment in a three-dimensional electrochemical reactor equipped with PbO_2 anodes and granular activated carbon particle electrodes
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Improved degradation of diuron herbicide and pesticide wastewater treatment in a three-dimensional electrochemical reactor equipped with PbO_2 anodes and granular activated carbon particle electrodes

机译:在配备有PbO_2阳极和粒状活性炭粒子电极的三维电化学反应器中改善了利尿除草剂和农药废水处理的降解

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The electrocatalytic performance of porous carbon felt/PbO2 and planar titanium/PbO2 anodes in a three-dimensional electrochemical reactor (3DER) equipped with granular activated carbon (GAC) particle has been studied for synergistic degradation of diuron herbicide (DIU) and treatment of pesticide wastewater. The results showed that porous carbon felt/PbO2 anode in addition to high stability can provide around three times more surface area than titanium/PbO2 for degradation reactions. Optimization of DIU degradation in 3DER system with carbon felt/PbO2 anode was performed by a five-level rotatable central composite design. The TOC mineralization rate under optimal conditions (pH = 4.7, current density = 13.5 mA cm(-2), Na2SO4 concentration = 0.04 M and DIU concentration = 40 mg L-1) for the 3DER system with carbon felt/PbO2 and titanium/PbO2 anodes after 50 min were 100% and 63.8%, respectively. However, the electrocatalytic efficiency of carbon felt/PbO2 and titanium/PbO2 anodes in the absence of GAC particles to remove TOC was 85.5 and 42.7%, respectively. The energy consumed in the 3DER system equipped with carbon felt/PbO2 anode was 2.28 times less than the 3DER system with titanium/PbO2. The contribution of direct and indirect oxidation of DIU in 3DER degradation systems was determined by radical scavenging technique. The safety of the anodes was evaluated for Pb2+ leakage. The DIU degradation pathway was proposed based on the intermediates identified by LC-MS. The performance of optimized 3DER systems was evaluated for treatment of real pesticide wastewater. The chemical oxygen demand (COD) removal efficiency after 300 min of reaction in the 3DER system with carbon felt/PbO2 and titanium/PbO2 electrodes was 95% and 62.5%, respectively.
机译:多孔碳的电性能毡/二氧化铅和平面钛/二氧化铅阳极在装有粒状活性炭的三维电化学反应器(3DER)(GAC)粒子已经研究了敌草隆除草剂的协同降解(DIU)和治疗农药的废水。结果表明,多孔碳毡/二氧化铅阳极除了高稳定性可用于降解反应提供围绕三倍更大的表面积比钛/二氧化铅。在3DER系统与碳DIU降解的优化毡/二氧化铅阳极用五级旋转组合设计进行。最佳条件下的TOC矿化速率(pH值= 4.7,电流密度=13.5毫安厘米(-2),硫酸钠浓度= 0.04 M和DIU浓度= 40毫克L-1),用于与碳毡/二氧化铅和钛3DER系统/二氧化铅阳极50分钟后分别为100%和63.8%。然而,碳的电效率毡/二氧化铅和钛/二氧化铅阳极在没有GAC颗粒以除去TOC分别为85.5和42.7%。在配备有碳毡/二氧化铅阳极的3DER系统所消耗的能量比用钛/二氧化铅的3DER系统少2.28倍。 DIU的直接和间接氧化的3DER降解系统中的贡献是由自由基清除技术确定。阳极的安全性进行了评估Pb2 +的泄漏。基于通过LC-MS来识别该中间物提出的DIU降解途径。优化3DER系统的性能进行了评估治疗真正农药废水。后在用碳3DER系统反应的300分钟的化学需氧量(COD)的去除效率毡/二氧化铅和钛/二氧化铅的电极分别为95%和62.5%。

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