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Advanced treatment of dyeing wastewater towards reuse by the combined Fenton oxidation and membrane bioreactor process
Authors:Fei Feng  Zhenliang Xu  Xiaohuan Li  Wenting You and Yang Zhen
Institution:1. State Key Laboratory of Chemical Engineering, East China University of Science and Technology (ECUST), Shanghai 200237, China;Membrane Science and Engineering R & D Lab, Chemical Engineering Research Center, ECUST, Shanghai 200237, China
2. College of Food Science & Technology, Shanghai Ocean University, Shanghai 201306, China
3. Membrane Science and Engineering R & D Lab, Chemical Engineering Research Center, ECUST, Shanghai 200237, China
Abstract:Nineteen surface sediment samples collected from Baiyangdian Lake and its inflowing river (Fuhe River) in North China were analyzed for polybrominated diphenyl ethers (PBDEs) and decabromodiphenylethane (DBDPE). The concentrations of PBDEs and DBDPE in sediments ranged from 5.5 to 300.7 ng/g dry weight (dw) and 1.1 to 68.2 ng/g dw, respectively. Their levels in sediments in Fuhe River were significantly higher than those in Baiyandian Lake. Compared to data from other regions, the PBDE levels in surface sediments from Baiyangdian Lake and Fuhe River were in the medium to lower range. Among the PBDE congeners, BDE209 was predominant, with contributions to the total PBDEs ranging from 79.4% to 97.3% in sediment samples. For the lowly brominated congeners (tri- to hepta-BDE), BDE47 and BDE99 were the most abundant, which contributed 52.1% and 44.1% to the sum of tri- to hepta-BDEs in the sediments from Baiyangdian Lake and Fuhe River, respectively. The compositional patterns of PBDEs in Baiyangdian Lake sediments indicated that technical deca-BDE mixture was the major pollutant sources with a minor contribution of penta-BDE mixture. The present study suggested that the importance of Fuhe River as a possibly potential sources of PBDEs contamination in Baiyangdian Lake.
Keywords:dyeing wastewater  Fenton oxidation  membrane bioreactor  Zahn-Wallens Test
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