首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Study on Electrochemical Degradation of Nicosulfuron by IrO2-Based DSA Electrodes: Performance Kinetics and Degradation Mechanism
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Study on Electrochemical Degradation of Nicosulfuron by IrO2-Based DSA Electrodes: Performance Kinetics and Degradation Mechanism

机译:IrO2基DSA电极电化学降解烟嘧磺隆的性能动力学和降解机理

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摘要

The widely used sulfonylurea herbicides have caused negative effects on the environment and human beings. Electrochemical degradation has attracted much attention in the treatment of refractory organic compounds due to its advantage of producing no secondary pollution. Three kinds of IrO2-based dimensionally stable anodes (DSAs) were used to degrade nicosulfuron by a batch electrochemical process. The results showed that a well-distributed crack network was formed on the Ti/Ta2O5-IrO2 electrode and Ti/Ta2O5-SnO2-IrO2 electrode due to the different coefficients of thermal expansion between the Ti substrate and oxide coatings. The oxygen evolution potential (OEP) increased according to the order of Ti/RuO2-IrO2 < Ti/Ta2O5-SnO2-IrO2 < Ti/Ta2O5-IrO2. Among the three electrodes, the Ti/Ta2O5-IrO2 electrode showed the highest efficiency and was chosen as the experimental electrode. Single factor experiments were carried out to obtain the optimum electrolysis condition, shown as follows: currency intensity 0.8 A; electrode spacing 3 cm, electrolyte pH 3. Under the optimum conditions, the degradation of nicosulfuron followed first-order kinetics and was mainly due to indirect electrochemical oxidation. It was a typical diffusion-controlled electrochemical process. On the basis of the intermediate identified by high performance liquid chromatograph-mass spectrometry (HPLC-MS), two possible degradation routes were proposed.
机译:广泛使用的磺酰脲类除草剂对环境和人类造成了负面影响。电化学降解由于其不产生二次污染的优点而在难处理有机化合物的处理中引起了广泛的关注。三种基于IrO2的尺寸稳定阳极(DSA)用于通过分批电化学过程降解烟嘧磺隆。结果表明,由于Ti基体和氧化物涂层之间的热膨胀系数不同,在Ti / Ta2O5-IrO2电极和Ti / Ta2O5-SnO2-IrO2电极上形成了分布均匀的裂纹网络。氧析出势(OEP)按照Ti / RuO2-IrO2 2 的顺序增加。在这三个电极中,Ti / Ta 2 O 5 -IrO 2 电极效率最高,被选作实验电极。进行单因素实验以获得最佳的电解条件,如下所示:流通强度0.8 A;电极间距3 cm,电解质pH为3。在最佳条件下,烟嘧磺隆的降解遵循一级动力学,并且主要是由于间接电化学氧化所致。这是典型的扩散控制的电化学过程。基于高效液相色谱-质谱(HPLC-MS)鉴定的中间体,提出了两种可能的降解途径。

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