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Electrochemical degradation of ethylene glycol in antifreeze liquids using boron doped diamond anode

机译:硼掺杂金刚石阳极在防冻液中对乙二醇的电化学降解

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摘要

Large amounts of ethylene glycol (EG) based antifreeze liquids are daily discharge into the receiving waters. The chemical oxygen demand (COD) detected in most of the lakes and rivers close to the discharge points (industries, airports, etc.) exceeded 100,000 mg O-2/L. With such an amount, biological and chemical processes are inefficient to completely remove EG. In order to achieve better results, electrochemical oxidation (ECO) of EG was carried out on a laboratory scale. Niobium Boron Doped Diamond (Nb/BDD) was used as anode whereas carbon felt was used as cathode in a rectangular electrolytic cell. Different operating parameters including current intensity, treatment time, anode material, electrolyte type, electrolyte concentration and pollutant concentration were tested. The application of 0.077 A/cm(2) of current density during 120 min of treatment time in the presence of 7.0 g/L of Na2SO4 allowed 89.6 +/- 0.2% of COD removal with 490 mg O-2/L of residual COD. This result was far below the legislation standard set by the province of Quebec that allows the discharge of 800 mg O-2/L of EG used for industrial purposes. The efficiency of ECO process was attributed to both direct and indirect oxidation that generate strong oxidizing species (ex: OH degrees, S2O82-, H2O2, etc.) capable of oxidizing organic matters on the surface of the anode and in the bulk of the solution. (C) 2016 Elsevier B.V. All rights reserved.
机译:每天都有大量的基于乙二醇(EG)的防冻液排入接收水。在靠近排放点(工业,机场等)的大多数湖泊和河流中检测到的化学需氧量(COD)超过100,000 mg O-2 / L。如此量的生物和化学过程无法完全去除EG。为了获得更好的结果,在实验室规模上进行了EG的电化学氧化(ECO)。在矩形电解池中,掺铌硼金刚石(Nb / BDD)被用作阳极,而碳毡被用作阴极。测试了不同的操作参数,包括电流强度,处理时间,负极材料,电解质类型,电解质浓度和污染物浓度。在存在7.0 g / L的Na2SO4的情况下,在120分钟的处理时间内施加0.077 A / cm(2)的电流密度,可去除89.6 +/- 0.2%的COD,并保留490 mg O-2 / L的残留COD 。该结果远低于魁北克省制定的立法标准,该法律允许排放800 mg O-2 / L的工业用EG。 ECO工艺的效率归因于直接和间接氧化,它们产生了能够氧化阳极表面和整个溶液中有机物的强氧化性物质(例如OH度,S2O82-,H2O2等)。 。 (C)2016 Elsevier B.V.保留所有权利。

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