Can-Güven Emine
Yıldız Technical University, Faculty of Civil Engineering, Department of Environmental Engineering, 34220, İstanbul, Turkey.
J Environ Manage. 2021 Dec 15;300:113784. doi: 10.1016/j.jenvman.2021.113784. Epub 2021 Sep 23.
This study investigated chemical oxygen demand (COD), color number (CN), and UV removal from dye manufacturing wastewater via electrocoagulation (EC) and electro-Fenton (EF) processes. The effects of current density, initial pH, reaction time, and HO/COD ratio on the EC and EF processes were evaluated and optimum operating conditions were determined. The effects of EC and EF processes on COD fractions and the specific energy consumption of both processes were evaluated. Sludge analyses were conducted by organic removal to sludge ratio (ORSR) and Fourier Transform Infrared Spectroscopy spectra were assessed for characterization of generated sludge. Optimum operation conditions for the EC process were 21 mA/cm current density, 7.3 initial pH, and 25 min reaction time while they were 21 mA/cm current density, 3.5 initial pH, 1.25 HO/COD ratio, and 35 min reaction time for EF process. Under optimum conditions COD, CN, and UV removal efficiencies were 38.5%, 90.1%, and 52.5%, respectively in EC process and 54.8%, 94.2%, and 88.1%, respectively in EF process. Both processes have a positive effect on the increase of biodegradable and soluble COD fractions. Higher ORSR and lower specific energy consumption were provided by the EF process under optimum conditions. The EF process is more effective when pollutant removal efficiencies, ORSR, and specific energy consumption are considered.
本研究通过电凝聚(EC)和电芬顿(EF)工艺研究了染料制造废水的化学需氧量(COD)、色数(CN)和紫外线去除情况。评估了电流密度、初始pH值、反应时间和HO/COD比对EC和EF工艺的影响,并确定了最佳操作条件。评估了EC和EF工艺对COD组分的影响以及这两种工艺的比能耗。通过有机去除与污泥比(ORSR)进行污泥分析,并对傅里叶变换红外光谱进行评估以表征产生的污泥。EC工艺的最佳操作条件为电流密度21 mA/cm²、初始pH值7.3和反应时间25分钟,而EF工艺的最佳操作条件为电流密度21 mA/cm²、初始pH值3.5、HO/COD比1.25和反应时间35分钟。在最佳条件下,EC工艺中COD、CN和紫外线去除效率分别为38.5%、90.1%和52.5%,EF工艺中分别为54.8%、94.2%和88.1%。两种工艺对可生物降解和可溶性COD组分的增加均有积极影响。在最佳条件下,EF工艺提供了更高的ORSR和更低的比能耗。从污染物去除效率、ORSR和比能耗方面考虑,EF工艺更有效。