过硫酸盐
流出物
废水
化学
污染物
催化作用
羟基自由基
硫黄
毒性
硫酸盐
环境化学
污水处理
急性毒性
核化学
有机化学
环境科学
环境工程
激进的
作者
Yang Ma,Yongwen Ma,Jinquan Wan,Yan Wang,Gang Ye,Zhifei Zhang,Yining Lin
摘要
Abstract Advanced oxidation technologies based on hydroxyl radical (•OH) and sulfate radical (SO4−•) are two common types of advanced oxidation technologies, but there are not many reports on the application of advanced oxidation methods in actual wastewater pretreatment. This article compares the pre-treatment performance of Fe2+/H2O2 and Fe2+/Persulfate systems in actual pharmaceutical wastewater, and combines EEM, GC-MS, and toxicity testing results to explore the differences in TOC, COD, and NH3-N removal rates, optimal catalyst dosage, applicable pH range, toxicity of effluent after reaction, and pollutant structure between the two systems. The results indicate that the Fe2+/H2O2 system has a higher pollutant removal rate (TOC: 71.9%, COD: 66.9%, NH3-N: 34.1%), but also requires a higher catalyst (Fe2+) concentration (6.0 g/L), and its effluent exhibits characteristic peaks of aromatic proteins. The Fe2+/Persulfate system has a wider pH range (pH ≈ 3-7) and is more advantageous in treating wastewater containing more cyclic organic compounds, but the effluent contains some sulfur-containing compounds. In addition, toxicity tests have shown that the toxicity reduction effect of the Fe2+/Persulfate system is stronger than that of the Fe2+/H2O2 system.
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