Bhagawati Prashant Basavaraj, Shivayogimath Chandrashekhar Basayya
Faculty of Engineering, Department of Civil Engineering, Annasaheb Dange College of Engineering and Technology, Ashta, Maharashtra 416301 India.
Faculty of Engineering, Department of Civil Engineering, Basaveshwar Engineering College, Bagalkot, Karnataka 587102 India.
J Environ Health Sci Eng. 2021 Mar 14;19(1):553-564. doi: 10.1007/s40201-021-00627-8. eCollection 2021 Jun.
In this study, Taguchi experimental design was used to the optimize operating parameters for the degradation of paper mill effluent using electrochemical (EC) process with two-dimensional concentric aluminum tube electrodes (CATE). For this purpose, four significant experimental factors were used in four levels pH (6-9), electrolysis time (10-40 min), voltage (6-12 V) and surface area (357-624 cm). The process parameters were optimized, through performing L16 orthogonal array of Taguchi technique, for the removal of chemical oxygen demand (COD) and turbidity. The percent COD and turbidity reductions were transferred into an accurate S/N ratio for a larger value is the better (LBT) response. The study presents a unique method of finding optimum combination of process parameters to illustrate their effect on the turbidity and COD reduction. The treatment conditions for the maximum elimination of the pollutants were second level of pH (7), third level of ET (30 min), fourth level of voltage (12 V) and second level of surface area (446 cm). The confirmation experiment results were within the confidence intervals (CI) indicating an acceptable agreement between predicted and observed values. Based on the values, the electrolysis time and voltages were found to be the most significant factors for both COD and turbidity reduction. The findings of research indicated, that the Taguchi method can be used successfully for the treatment of paper industry effluent by electrochemical technique.
在本研究中,采用田口实验设计法来优化使用二维同心铝管电极(CATE)的电化学(EC)工艺降解造纸厂废水的操作参数。为此,在四个水平上使用了四个重要实验因素,即pH值(6 - 9)、电解时间(10 - 40分钟)、电压(6 - 12伏)和表面积(357 - 624平方厘米)。通过执行田口技术的L16正交阵列,对化学需氧量(COD)和浊度的去除进行工艺参数优化。将COD和浊度降低的百分比转化为准确的信噪比,较大的值表示更好的(LBT)响应。该研究提出了一种独特的方法来找到工艺参数的最佳组合,以说明它们对浊度和COD降低的影响。污染物最大去除量的处理条件为pH值的第二水平(7)、电解时间的第三水平(30分钟)、电压的第四水平(12伏)和表面积的第二水平(446平方厘米)。验证实验结果在置信区间(CI)内,表明预测值与观测值之间具有可接受的一致性。基于这些值,发现电解时间和电压是降低COD和浊度的最重要因素。研究结果表明,田口方法可成功用于通过电化学技术处理造纸工业废水。