Department of Civil Engineering, School of Technology, Pandit Deendayal Petroleum University, Gandhinagar, 382007, India.
Department of Civil Engineering, School of Technology, Pandit Deendayal Petroleum University, Gandhinagar, 382007, India; Department of Civil Engineering, National Institute of Technology Calicut, India.
Chemosphere. 2021 Apr;269:128739. doi: 10.1016/j.chemosphere.2020.128739. Epub 2020 Oct 26.
The intricacy in the treatment of effluents from the textile sector attracts the researchers since 20th century. Dye intermediate manufacturing industries are responsible for producing the toxic pollutants such as nitro-aromatics, benzene, toluene, phenol, heavy metals etc. with intense colour. The present study focuses on the performance of combined Electro-Fenton (EF) and sonication for the removal of ammoniacal nitrogen and COD from dye intermediate manufacturing wastewater. Batch experiments of EF were performed using graphite electrodes and sonication was applied to the EF treated wastewater to enhance the treatment performance. A number of experiments were executed to discover the influence of pH, applied voltage, Fenton catalyst dosage and time of electrolysis on the removal efficiency of EF batch process was scrutinized. The pH was varied between 2 and 4, applied voltage from 1 to 4V, Fenton catalyst dosage between 50 and 200 mg L and time between 15 and 180 min. At optimum condition i.e. pH 3, applied voltage 3V, Fenton catalyst dosage of 100 mg Land 120 min electrolysis time, the percentage removal obtained for ammoniacal nitrogen and COD were 59.4% and 79.2% respectively. The removal efficiency was increased to 65.5% for ammoniacal nitrogen and 85.4% for COD after applying sonication to the EF treated wastewater. The removal of ammoniacal nitrogen and COD can be achieved in a scientific and feasible way by combining EF process with sonication.
自 20 世纪以来,纺织行业废水处理的复杂性就一直吸引着研究人员的注意。染料中间体制造业负责生产具有强烈颜色的有毒污染物,如硝基芳烃、苯、甲苯、苯酚、重金属等。本研究重点研究了电芬顿(EF)和超声联合处理染料中间体生产废水中氨氮和 COD 的性能。使用石墨电极进行 EF 批处理实验,并将超声应用于 EF 处理后的废水以提高处理性能。进行了多项实验以发现 pH、施加电压、Fenton 催化剂剂量和电解时间对 EF 批量处理去除效率的影响。pH 值在 2 到 4 之间变化,施加电压在 1 到 4V 之间,Fenton 催化剂剂量在 50 到 200mg/L 之间,电解时间在 15 到 180min 之间。在最佳条件下,即 pH 值为 3、施加电压为 3V、Fenton 催化剂剂量为 100mg/L 和 120min 电解时间,氨氮和 COD 的去除率分别为 59.4%和 79.2%。将超声应用于 EF 处理后的废水中后,氨氮和 COD 的去除率分别提高到 65.5%和 85.4%。通过将 EF 工艺与超声结合,可以以科学可行的方式去除氨氮和 COD。