Sharma Pinki, Joshi Himanshu, Srivastava Vimal C
a Department of Hydrology , Indian Institute of Technology Roorkee , Roorkee , India.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2015;50(6):617-30. doi: 10.1080/10934529.2015.994968.
The objective of this study was to determine the effectiveness of two-stage electro-coagulation (EC) process using multi-parameter optimization for treating bio-digested distillery spent wash by stainless steel (SS) and aluminum (Al) electrodes. Operating parameters have been optimized and treatment efficiency of SS and Al electrodes have been compared by central composite design of response surface analysis in terms of COD, color and total organic carbon (TOC) removal. Individual and interactive effects of four independent parameters namely initial pH (pHo: 2-10 and 4-10 for SS and Al electrodes, respectively), current density (j: 30.86-154.32 A m(-2)), inter-electrode distance (g: 0.5-2.5 cm) and electrolysis time (t: 30-150 min) on the COD, color and TOC removal efficiency were evaluated for both the electrodes. SS electrode was found to be more effective for the removal of COD, color and TOC with removal efficiencies of 70%, 93% and 72%, respectively, as compared to Al electrode, which showed respective removal efficiencies of 59%, 80% and 55%. A two-stage EC process was also conducted to study the predominance of different types of electrodes, and to increase the efficiency of EC process. Results shows that SS followed by Al electrode (with total COD, color and TOC removal efficiency of 81%, 94% and 78%, respectively) was found to be more effective than Al followed by SS electrode combination (with total COD, color and TOC removal efficiency of 78%, 89% and 76%, respectively). Present study shows that EC process can be used as an additional step to bio-methanation process so as to meet effluent discharge standards in distilleries.
本研究的目的是确定采用多参数优化的两级电凝聚(EC)工艺,使用不锈钢(SS)和铝(Al)电极处理生物消化后的酿酒厂废醪液的效果。通过响应面分析的中心复合设计,在化学需氧量(COD)、色度和总有机碳(TOC)去除方面,对操作参数进行了优化,并比较了SS和Al电极的处理效率。评估了四个独立参数,即初始pH值(SS和Al电极分别为pHo:2 - 10和4 - 10)、电流密度(j:30.86 - 154.32 A m(-2))、极间距(g:0.5 - 2.5 cm)和电解时间(t:30 - 150 min)对两种电极COD、色度和TOC去除效率的单独和交互影响。结果发现,与Al电极相比,SS电极在去除COD、色度和TOC方面更有效,去除效率分别为70%、93%和72%,而Al电极的相应去除效率分别为59%、80%和55%。还进行了两级EC工艺,以研究不同类型电极的优势,并提高EC工艺的效率。结果表明,先使用SS电极后使用Al电极(总COD、色度和TOC去除效率分别为81%、94%和78%)比先使用Al电极后使用SS电极组合(总COD、色度和TOC去除效率分别为78%、89%和76%)更有效。本研究表明,EC工艺可作为生物甲烷化工艺的附加步骤,以满足酿酒厂的废水排放标准。