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首页> 外文期刊>Chemical engineering journal >Electrochemical degradation of chlorpyrifos pesticide in aqueous solutions by anodic oxidation at boron-doped diamond electrodes
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Electrochemical degradation of chlorpyrifos pesticide in aqueous solutions by anodic oxidation at boron-doped diamond electrodes

机译:掺硼金刚石电极上的阳极氧化电化学降解毒死rif农药的水溶液

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摘要

Laboratory experiments were carried out on the kinetic of the electrochemical degradation of aqueous solutions containing chlorpyrifos as model compounds of organophosphorus pesticides. The process was studied under galvanostatic polarization mode in acidic medium using boron-doped diamond (BDD) anodes and graphite carbon bar as cathode. The chemical oxygen demand (COD) measurement during the processing permitted the evaluation of the kinetic of organic matter decay and the instantaneous current efficiency. The results showed that the degradation of this pesticide is dependent on its initial concentration, current density and temperature. COD decay follows a pseudo first-order kinetic and the process was under mass transport control within the range studied, regardless of the experimental conditions. The removal rate of COD increases with applied current density until 20 mA cm~(-2) and decreases for higher values. The degradation rate increased significantly with increasing temperature and initial concentration of chlorpyrifos. The best obtained conditions for COD removal on the BDD anode to degrade chlorpyrifos solutions (COD(0) = 456mgL~(-1)) include operating at 20mAcm~(-2) and 70 °C This arrangement allows to completely degrade chlorpyrifos in just 6 h. Compared with PbO2, BDD anode has shown more performance and rapidity in the COD removal in the same electrolysis device.
机译:对含有毒死rif作为有机磷农药模型化合物的水溶液进行电化学降解的动力学进行了实验室实验。以掺杂硼的金刚石(BDD)阳极和石墨碳棒为阴极,在恒电流极化模式下对酸性介质进行了研究。在处理过程中化学需氧量(COD)的测量可以评估有机物衰减的动力学和瞬时电流效率。结果表明,该农药的降解取决于其初始浓度,电流密度和温度。无论实验条件如何,COD的衰减均遵循伪一级动力学,并且该过程在所研究的范围内处于质量传递控制之下。 COD的去除率随着施加的电流密度的增加而增加,直到20 mA cm〜(-2)为止;而对于更高的值则降低。降解速率随着毒死rif温度和初始浓度的增加而显着增加。在BDD阳极上去除COD以降解毒死rif溶液的最佳获得条件(COD(0)= 456mgL〜(-1))包括在20mAcm〜(-2)和70°C的条件下操作。 6小时与PbO2相比,在同一电解装置中,BDD阳极在去除COD方面表现出更高的性能和速度。

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