| Literature DB >> 28664496 |
Hongliang Dai1,2, Wenliang Chen1,2,3, Zheqin Dai1,2, Xiang Li1,2, Xiwu Lu4,5.
Abstract
A systematic calibration and validation procedure for the complex mechanistic modeling of anaerobic-anoxic/nitrifying (A2N) two-sludge system is needed. An efficient method based on phase experiments, sensitivity analysis, and genetic algorithm is proposed here for model calibration. Phase experiments (anaerobic phosphorus release, aerobic nitrification, and anoxic denitrifying phosphate accumulation) in an A2N sequencing batch reactor (SBR) were performed to reflect the process conditions accurately and improve the model calibration efficiency. The calibrated model was further validated using 30 batch experiments and 3-month dynamic continuous flow (CF) experiments for A2N-SBR and CF-A2N process, respectively. Several statistical criteria were conducted to evaluate the accuracy of model predications, including the average relative deviation (ARD), mean absolute error (MAE), root mean square error (RMSE), and Janus coefficient. Visual comparisons and statistical analyses indicated that the calibrated model could provide accurate predictions for the effluent chemical oxygen demand (COD), ammonia nitrogen (NH4+-N), total nitrogen (TN), and total phosphorus (TP), with only one iteration.Entities:
Keywords: Activated sludge models (ASMs); Anaerobic–anoxic/nitrifying (A2N) two-sludge system; Genetic algorithm; Model calibration; Sensitivity analysis
Mesh:
Substances:
Year: 2017 PMID: 28664496 DOI: 10.1007/s11356-017-9437-z
Source DB: PubMed Journal: Environ Sci Pollut Res Int ISSN: 0944-1344 Impact factor: 4.223