Song Xiulan, Wang Chao, Liu Meiqin, Zhang Miao
College of Environmental Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China E-mail:
Faculty of Science and Technology, Technological and Higher Education Institute of Hong Kong, Tsing Yi Island, Hong Kong.
Water Sci Technol. 2018 Apr;77(7-8):1891-1898. doi: 10.2166/wst.2018.069.
Advanced treatment of biologically treated coking wastewater (BTCW) using persulfate (PS) oxidation with magnetic activated carbon composite (CuFeO:AC w/w ratio of 1:1.5, denoted as 1.5-MACC) as a green catalyst was evaluated at ambient temperature (30 °C). Effects of PS (KSO) and 1.5-MACC doses on PS decomposition and total organic carbon (TOC) removal in BTCW were also studied during 360 min. The results showed that the 1.5-MACC/PS system has a much better performance on TOC removal in BTCW than only 1.5-MACC or PS system. PS decomposition and TOC removal follow first-order kinetics in the 1.5-MACC/PS system. The optimum condition of the 1.5-MACC/PS system to treat BTCW is with a KSO dose of 4 g L and 1.5-MACC dose of 5 g L. Under this condition, TOC in the PS oxidation effluent is 20.4 mg L with a removal efficiency of 85.4%. TOC removal is a synergistic effect of adsorption and oxidation. TOC oxidation is due to the generation of ·SO via the activation of PS by CuFeO impregnated AC. The gas chromatography-mass spectrometry (GC-MS) analysis revealed that phenol compounds and esters were removed significantly by the 1.5-MACC/PS system. When 1.5-MACC was used for the fourth time in the 1.5-MACC/PS system, the removal ratio of TOC was still over 62.2% in 360 min reaction. Thus, the 1.5-MACC/PS system has a potential practical application in treatment of BTCW.
在环境温度(30°C)下,评估了以磁性活性炭复合材料(CuFeO:AC重量比为1:1.5,记为1.5-MACC)作为绿色催化剂,采用过硫酸盐(PS)氧化法对生物处理后的焦化废水(BTCW)进行深度处理的效果。在360分钟内,还研究了PS(KSO)和1.5-MACC剂量对BTCW中PS分解和总有机碳(TOC)去除的影响。结果表明,1.5-MACC/PS体系在去除BTCW中的TOC方面比仅使用1.5-MACC或PS体系具有更好的性能。在1.5-MACC/PS体系中,PS分解和TOC去除遵循一级动力学。1.5-MACC/PS体系处理BTCW的最佳条件是KSO剂量为4 g/L,1.5-MACC剂量为5 g/L。在此条件下,PS氧化出水的TOC为20.4 mg/L,去除效率为85.4%。TOC去除是吸附和氧化的协同作用。TOC氧化是由于负载CuFeO的AC对PS的活化产生了·SO。气相色谱-质谱(GC-MS)分析表明,1.5-MACC/PS体系显著去除了酚类化合物和酯类。当1.5-MACC在1.5-MACC/PS体系中第四次使用时,在360分钟的反应中TOC去除率仍超过62.2%。因此,1.5-MACC/PS体系在处理BTCW方面具有潜在的实际应用价值。