首页> 外文期刊>Journal of Environmental Management >Application of response surface methodology (RSM) for optimisation of COD,NH_3-N and 2,4-DCP removal from recycled paper wastewater in a pilot-scale granular activated carbon sequencing batch biofilm reactor (GAC-SBBR)
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Application of response surface methodology (RSM) for optimisation of COD,NH_3-N and 2,4-DCP removal from recycled paper wastewater in a pilot-scale granular activated carbon sequencing batch biofilm reactor (GAC-SBBR)

机译:应用响应表面方法(RSM)优化中试规模的颗粒活性炭定序生物膜反应器(GAC-SBBR)中回收纸废水中的COD,NH_3-N和2,4-DCP去除量

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In this study, the potential of a pilot-scale granular activated carbon sequencing batch biofilm reactor (GAC-SBBR) for removing chemical oxygen demand (COD), ammoniacal nitrogen (NH3-N) and 2,4-dichlorophenol (2,4-DCP) from recycled paper wastewater was assessed. For this purpose, the response surface methodology (RSM) was employed, using a central composite face-centred design (CCFD), to optimise three of the most important operating variables, i.e., hydraulic retention time (HRT), aeration rate (AR) and influent feed concentration (IFC), in the pilot-scale GAC-SBBR process for recycled paper waste-water treatment. Quadratic models were developed for the response variables, i.e., COD, NH3-N and 2,4-DCP removal, based on the high value (>0.9) of the coefficient of determination (R~2) obtained from the analysis of variance (ANOVA). The optimal conditions were established at 750 mg COD/L IFC, 3.2 m~3/min AR and 1 day HRT, corresponding to predicted COD, NH_3-N and 2,4-DCP removal percentages of 94.8,100 and 80.9%, respectively.
机译:在这项研究中,中试规模的活性炭定序批处理生物膜反应器(GAC-SBBR)去除化学需氧量(COD),氨氮(NH3-N)和2,4-二氯苯酚(2,4-评估了来自再生纸废水的DCP)。为此,采用响应面方法(RSM),使用中央复合面心设计(CCFD),以优化三个最重要的操作变量,即水力停留时间(HRT),充气速率(AR)和中试进料浓度GAC-SBBR工艺中的进料浓度(IFC),用于再生纸废水处理。基于方差分析获得的测定系数(R〜2)的高值(> 0.9),针对响应变量(即COD,NH3-N和2,4-DCP去除)开发了二次模型。方差分析)。最佳条件设定为750 mg COD / L IFC,3.2 m〜3 / min AR和1天HRT,分别对应于预测的COD,NH_3-N和2,4-DCP去除百分比分别为94.8,100和80.9% 。

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