Central composite design and response surface methodology (RSM) were implemented to optimize the operational parameters for a cross-flow aerobic sludge reactor (CFASR) in remedying mixed printing and dyeing wastewater (MPDW). The individual and interactive effects of three variables, hydraulic retention time (HRT), pH and sludge loading rate (SLR), on chemical oxygen demand (COD) and terephthalic acid (TA) removal rates were evaluated. For HRT of 15.3–19.8 hours, pH of 7.2–8.1 and SLR of 0.4–0.6 kg chemical oxygen demand (COD) per kg mixed liquor suspended solids per day, COD and TA removal rates of the CFASR exceeded 85% and 90%, respectively. The check experiment revealed that the effluent from the optimized CFASR was stable below the limitation of 100 mg COD/L and the TA concentration decreased by 6.0% compared to the usual CFASR. The results verified that the RSM was useful for optimizing the operation parameters of the CFASR in remedying MPDW.
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Research Article|
April 07 2015
Improving the simultaneous removal of chemical oxygen demand and terephthalic acid in a cross-flow aerobic sludge reactor by using response surface methodology Available to Purchase
Dong-Xue Hu;
1School of Municipal and Environmental Engineering, Harbin Institute of Technology, 202 Haihe Road, Harbin 150090, China
2College of Environment and Resources, Dalian Minzu University, 18 Liaohe West Road, Dalian 116600, China
E-mail: [email protected]
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Yu Tian;
Yu Tian
1School of Municipal and Environmental Engineering, Harbin Institute of Technology, 202 Haihe Road, Harbin 150090, China
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Zhao-Bo Chen;
Zhao-Bo Chen
2College of Environment and Resources, Dalian Minzu University, 18 Liaohe West Road, Dalian 116600, China
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Hui Ge;
Hui Ge
2College of Environment and Resources, Dalian Minzu University, 18 Liaohe West Road, Dalian 116600, China
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Yu-Bo Cui;
Yu-Bo Cui
2College of Environment and Resources, Dalian Minzu University, 18 Liaohe West Road, Dalian 116600, China
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Chun-Qiu Ran
Chun-Qiu Ran
2College of Environment and Resources, Dalian Minzu University, 18 Liaohe West Road, Dalian 116600, China
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Water Sci Technol (2015) 71 (12): 1823–1830.
Article history
Received:
November 11 2014
Accepted:
March 25 2015
Citation
Dong-Xue Hu, Yu Tian, Zhao-Bo Chen, Hui Ge, Yu-Bo Cui, Chun-Qiu Ran; Improving the simultaneous removal of chemical oxygen demand and terephthalic acid in a cross-flow aerobic sludge reactor by using response surface methodology. Water Sci Technol 1 June 2015; 71 (12): 1823–1830. doi: https://doi.org/10.2166/wst.2015.171
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