Department of Environmental Engineering, Peking University, the Key Laboratory of Water and Sediment Sciences, Ministry of Education, Beijing100871, China.
J Hazard Mater. 2011 May 15;189(1-2):127-33. doi: 10.1016/j.jhazmat.2011.02.008. Epub 2011 Mar 5.
Electrochemical oxidation of biologically-pretreated dye wastewater was performed in a boron-doped diamond (BDD) anode system. After electrolysis of 12h, the COD was decreased from 532 to 99 mg L(-1) (<100 mg L(-1), the National Discharge Standard of China). More importantly, the destination of organic pollutants during electrochemical oxidation process was carefully investigated by molecular weight distribution measurement, resin fractionation, ultraviolet-visible spectroscopy, HPLC and GC-MS analysis, and toxicity test. As results, most organic pollutants were completely removed by electrochemical oxidation and the rest was primarily degraded to simpler compounds (e.g., carboxylic acids and short-chain alkanes) with less toxicity, which demonstrated that electrochemical oxidation of biologically-pretreated dye wastewater with BDD anode was very effective and safe. Especially, the performance of BDD anode system in degradation of large molecular organics such as humic substances makes it very promising in practical applications as an advanced treatment of biologically-pretreated wastewaters.
电化学氧化法在掺硼金刚石(BDD)阳极系统中对生物预处理染料废水进行处理。经过 12 小时的电解后,COD 从 532 降至 99mg/L(<100mg/L,中国国家排放标准)。更重要的是,通过分子量分布测量、树脂分级、紫外可见光谱、HPLC 和 GC-MS 分析以及毒性测试,仔细研究了电化学氧化过程中有机污染物的去向。结果表明,大多数有机污染物通过电化学氧化完全去除,其余的主要降解为毒性较小的简单化合物(如羧酸和短链烷烃),这表明 BDD 阳极电化学氧化生物预处理染料废水非常有效和安全。特别是 BDD 阳极系统在降解腐殖质等大分子有机物方面的性能,使其在作为生物预处理废水的高级处理方面具有广阔的应用前景。