9th Curtin University of Technology Science and Engineering International Conference 2014 | |
Optimization and performance evaluation for nutrient removal from palm oil mill effluent wastewater using microalgae | |
自然科学;工业技术 | |
Ibrahim, Raheek I.^1 ; Wong, Z.H.^2 ; Mohammad, A.W.^2 | |
Chemical Engineering Department, University of Technology, Baghdad, Iraq^1 | |
Chemical and Process Engineering Department, Universiti Kebangsan, Malaysia, Selangor, Malaysia^2 | |
关键词: Central composite rotatable design; Nutrient removal; Optimization and performance; Optimum conditions; Palm oil mill effluents; Regression coefficient; Second-order polynomial; Surface response; | |
Others : https://iopscience.iop.org/article/10.1088/1757-899X/78/1/012006/pdf DOI : 10.1088/1757-899X/78/1/012006 |
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来源: IOP | |
【 摘 要 】
Palm oil mill effluent (POME) wastewater was produced in huge amounts in Malaysia, and if it discharged into the environment, it causes a serious problem regarding its high content of nutrients. This study was devoted to POME wastewater treatment with microalgae. The main objective was to find the optimum conditions (retention time, and pH) in the microalgae treatment of POME wastewater considering retention time as a most important parameter in algae treatment, since after the optimum conditions there is a diverse effect of time and pH and so, the process becomes costly. According to our knowledge, there is no existing study optimized the retention time and pH with % removal of nutrients (ammonia nitrogen NH3-N, and orthophosphorous PO43-) for microalgae treatment of POME wastewater. In order to achieve with optimization, a central composite rotatable design with a second order polynomial model was used, regression coefficients and goodness of fit results in removal percentages of nutrients (NH3-N, and PO43-) were estimated.WinQSB technique was used to optimize the surface response objective functionfor the developed model. Also experiments were done to validate the model results.The optimum conditions were found to be 18 day retention time for ammonia nitrogen, and pH of 9.22, while for orthophosphorous, 15 days were indicated as the optimum retention time with a pH value of 9.2.
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