Canakkale Onsekiz Mart University, Department of Environmental Engineering, 17020 Canakkale, Turkey.
Canakkale Onsekiz Mart University, Department of Environmental Engineering, 17020 Canakkale, Turkey.
Sci Total Environ. 2019 May 10;664:817-823. doi: 10.1016/j.scitotenv.2019.02.084. Epub 2019 Feb 6.
This study provides experimental results from batch and column studies to investigate diclofenac degradation by pyrite-Fenton process under variable chemical conditions (e.g., pyrite loading). Batch experiments show that diclofenac removal increased with increasing hydrogen peroxide and pyrite concentration. On the other hand, the addition of organic chelating agents such as citrate had an adverse effect on diclofenac removal by pyrite-Fenton process in batch systems due to scavenging effect of these agents for hydroxyl radicals. Batch results showed a direct correlation between the rate of diclofenac degradation and the rate of iron dissolution from pyrite, suggesting that diclofenac removal by pyrite-Fenton process was mainly controlled by solution phase hydroxyl radical attack on aromatic structure. Column experiments show that the effluent diclofenac concentration initially reached a peak value, and then sharply decreased to zero at higher pore volumes. The initial diclofenac breakthrough coincided well with the highest Fe(II) concentration observed in the breakthrough curve, implying that the generation of excess Fe(II) had a detrimental effect on removal efficiency due to scavenging effect of excess Fe(II) for hydroxyl radicals. The column system continued to function with 100% diclofenac removal efficiency when the effluent Fe(II) concentration decreased to a level at which the scavenging effect was minimized.
本研究通过批式和柱式实验提供了实验结果,以研究在可变化学条件(例如黄铁矿负载量)下,通过黄铁矿-Fenton 工艺降解双氯芬酸。批式实验表明,随着过氧化氢和黄铁矿浓度的增加,双氯芬酸的去除率增加。另一方面,由于这些试剂对羟基自由基的清除作用,在批式系统中添加有机络合剂(如柠檬酸盐)会对黄铁矿-Fenton 工艺去除双氯芬酸产生不利影响。批式结果表明,双氯芬酸降解速率与黄铁矿中铁的溶解速率之间存在直接相关性,表明黄铁矿-Fenton 工艺去除双氯芬酸主要受溶液相中羟基自由基对芳构结构的攻击控制。柱式实验表明,流出物中的双氯芬酸浓度最初达到峰值,然后在更高的孔隙体积下急剧降至零。初始双氯芬酸穿透与穿透曲线上观察到的最高 Fe(II)浓度吻合良好,这表明由于过量 Fe(II)对羟基自由基的清除作用,过量 Fe(II)的生成对去除效率有不利影响。当流出物中的 Fe(II)浓度降低到清除作用最小化的水平时,该柱式系统继续以 100%的双氯芬酸去除效率运行。