Decomposition of sulfadiazine in a sonochemical Fe0-catalyzed persulfate system: Parameters optimizing and interferences of wastewater matrix
Decomposition of sulfadiazine in a sonochemical Fe0-catalyzed persulfate system: Parameters optimizing and interferences of wastewater matrix
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磺胺嘧啶在声化学 Fe0 催化过硫酸盐体系中的分解:参数优化和废水基质的干扰
DOI:
10.1016/j.apcatb.2015.12.004
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发表时间:
2016-05
期刊:
影响因子:
--
通讯作者:
Xiaohui Wu
中科院分区:
文献类型:
--
作者:
Tao Zhou;Xiaoli Zou;Juan Mao;Xiaohui Wu
Effective decomposition of antibiotic sulfadiazine (SD) in a Fe0-catalyzed sonochemical Fenton like system (Sono-FL) was demonstrated. By using the response surface methodology (RSM), an optimized experimental condition of pH 7.00, 0.94 mM Fe0, 1.90 mM persulfate (PS) and 20 W ultrasound (US) power was concluded, which could reach the predicted SD degradation efficiency of 90%. Afterwards, effects of wastewater matrix (five inorganic anions and two chelating agents) on the SD degradation were investigated in the system, respectively. It was found that the SD degradation could be inhibited by SO42−, NO3−, HCO3−/CO32−and H2PO4−to different extents. Cl−would lead to an enhancement with a low dosage (5 mM), but an inhibition with a high dosage (100 mM). Unexpectedly, chlorinated organic intermediates were also found as SD decomposed. Appropriate dosages of oxalic acid (OxA) or EDTA could benefit the SD degradation in the Sono-FL system, while excessive chelating agents would play as competitive pollutants. It was summarized that inorganic anions would mainly react with SO4radical dot−and/or radical dotOH to form sub-radicals of less oxidative potential. OxA and EDTA would not only participate in complexing dissolution of Fe0but also provide additional oxidants such as H2O2and [FeIVO]2+, through the electron transfer reactions caused by the iron-ligands species.
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