School of Chemical Engineering, Northeast Electric Power University, Jilin City, 132012, China E-mail:
Water Sci Technol. 2020 May;81(10):2078-2091. doi: 10.2166/wst.2020.263.
Degradation of naproxen (NAP) by persulfate (PS) activated with zero-valent iron (ZVI) was investigated in our study. The NAP in aqueous solution was degraded effectively by the ZVI/PS system and the degradation exhibited a pseudo-first-order kinetics pattern. Both sulfate radical (SO ) and hydroxyl radical (HO) participate in the NAP degradation. The second-order rate constants for NAP reacting with SO and HO were (5.64 ± 0.73) × 10 M s and (9.05 ± 0.51) × 10 M s , respectively. Influence of key parameters (initial pH, PS dosage, ZVI dosage, and NAP dosage) on NAP degradation were evaluated systematically. Based on the detected intermediates, the pathways of NAP degradation in ZVI/PS system was proposed. It was found that the presence of ammonia accelerated the corrosion of ZVI and thus promoted the release of Fe, which induced the increased generation of sulfate radicals from PS and promoted the degradation of NAP. Compared to its counterpart without ammonia, the degradation rates of NAP by ZVI/PS were increased to 3.6-17.5 folds and 1.2-2.2 folds under pH 7 and pH 9, respectively.
在本研究中考察了过硫酸盐(PS)在零价铁(ZVI)活化下降解萘普生(NAP)的情况。ZVI/PS 体系能有效降解水溶液中的 NAP,降解过程符合准一级动力学模式。SO 和 HO 均参与了 NAP 的降解。NAP 与 SO 和 HO 的二级反应速率常数分别为(5.64±0.73)×10 M s 和(9.05±0.51)×10 M s 。系统评估了关键参数(初始 pH 值、PS 用量、ZVI 用量和 NAP 用量)对 NAP 降解的影响。基于检测到的中间产物,提出了 ZVI/PS 体系中 NAP 降解的途径。结果发现,氨的存在会加速 ZVI 的腐蚀,从而促进 Fe 的释放,这会导致 PS 产生更多的硫酸根自由基,并促进 NAP 的降解。与不含氨的体系相比,在 pH 值为 7 和 9 时,ZVI/PS 对 NAP 的降解速率分别提高了 3.6-17.5 倍和 1.2-2.2 倍。