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Application of Taguchi Experimental Design Methodfor Optimization the COD Removal Process inUpflow Anaerobic Filter

机译:Taguchi实验设计方法在优化上流厌氧滤池COD去除工艺中的应用

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In this study, two stages of upflow anaerobic filters (UAF) were used to investigate their performance based on the chemical oxygen demand (COD) removal from the rural domestic wastewater. Several factors were considered during the design and operation of an anaerobic process for successful treatment of the wastewater. Furthermore, Taguchi method was applied to investigate and evaluate the effect of selected factors on the performance efficiency of the UAF reactor. The experimental factors were optimized by L9 (34) orthogonal array design, which includes four factors with three levels using statistical analysis. The four factors involve the water acidity (pH), temperature (T), hydraulic retention time (HRT) and organic loading rate (OLR). The results revealed that all factors had a significant influence on the COD removal efficiency. The results demonstrated that the optimum conditions for achieving maximum COD removal efficiency were: initial pH of 7, temperature of 25°C, HRT of 1.5 day and OLR of 0.166 Kg. COD/m3.day. Moreover, the results showed that the HRT had highest percentage contribution in the COD removal process with 39.92%, followed by temperature of 33.78%, OLR of 13.75% and the pH of 9.18%. Confirmatory experiments conducted at the optimized conditions and compared with the predicted result show a good agreement.
机译:在这项研究中,基于从农村生活废水中去除化学需氧量(COD)的过程,使用了两个阶段的上流厌氧滤池(UAF)来研究其性能。在厌氧工艺的设计和运行过程中,考虑了几个因素以成功处理废水。此外,Taguchi方法用于研究和评估所选因素对UAF反应堆性能效率的影响。通过L9(34)正交阵列设计对实验因素进行了优化,其中使用统计分析方法包括三个级别的四个因素。这四个因素涉及水的酸度(pH),温度(T),水力停留时间(HRT)和有机负荷率(OLR)。结果表明,所有因素都对COD去除效率有重大影响。结果表明,实现最大COD去除效率的最佳条件是:初始pH为7,温度为25°C,HRT为1.5天,OLR为0.166 Kg。 COD / m3.day。此外,结果表明,HRT在COD去除过程中的贡献百分比最高,为39.92%,其次是温度33.78%,OLR 13.75%和pH值9.18%。在最佳条件下进行的验证性实验与预测结果进行了比较,结果吻合良好。

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