Sequential "electrochemical peroxidation - Electro-Fenton" process for anaerobic sludge treatment

被引:58
作者
Olvera-Vargas, H. [1 ]
Zheng, X. [1 ]
Garcia-Rodriguez, O. [1 ]
Lefebvre, O. [1 ]
机构
[1] Natl Univ Singapore, Dept Civil & Environm Engn, Ctr Water Res, 1 Engn Dr 2, Singapore 117576, Singapore
关键词
Anaerobic sludge; Electrochemical peroxidation; Electrocoagulation; Electro-Fenton; Wastewater treatment; WASTE-WATER TREATMENT; ADVANCED OXIDATION PROCESSES; EXTRACELLULAR POLYMERIC SUBSTANCES; COLD INCINERATION; ELECTROCOAGULATION; MINERALIZATION; DEGRADATION; PRETREATMENT; DEWATERABILITY; IMPROVEMENT;
D O I
10.1016/j.watres.2019.01.063
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this study, we present a sequential electrochemical process for integral treatment of anaerobic sludge, combining for the first time electrochemical peroxidation (ECP) and electro-Fenton (EF). In the first step, ECP (consisting of H2O2-assisted electrocoagulation with Fe electrodes) was applied as a conditioning and stabilizing method, whose synergistic electrocoagulation/Fenton oxidation effects considerably reduced the COD, TOC and total suspended solids (TSS) by 89.3%, 75.4% and 85.6%, respectively, under optimized conditions (initial pH of 5, [H2O2]/[Fe2+] dose ratio of 5, 15.38 mA cm(-2) and 2 h treatment). Furthermore, total coliforms were completely killed within the first hour of treatment. In the second step, EF was successfully applied to mineralize the remaining organic fraction in the liquid effluent after dewatering, achieving 91.6% and 87.2% of COD and TOC removal, respectively, after 4 h of treatment under optimal conditions (pH 3 and 25 mA cm(-2)), while almost total COD and TOC removal was attained in 8 h. The Fe sludge generated at the end of the ECP treatment was easily dewatered by filtration and 20.9 g of nutrient-rich dry sludge were produced. The overall cost of the ECP-EF treatment was S$ 0.05 L-1 sludge. The combined effects of coagulation and Fenton oxidation during ECP revealed that the treatment efficiency is strongly dependent on the rheological properties of the sludge sample. (C) 2019 Elsevier Ltd. All rights reserved.
引用
收藏
页码:277 / 286
页数:10
相关论文
共 63 条
[21]   Effects of reducing agents on the degradation of 2,4,6-tribromophenol in a heterogeneous Fenton-like system with an iron-loaded natural zeolite [J].
Fukuchi, Shigeki ;
Nishimoto, Ryo ;
Fukushima, Masami ;
Zhu, Qianqian .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2014, 147 :411-419
[22]   Mineralization of electronic wastewater by electro-Fenton with an enhanced graphene-based gas diffusion cathode [J].
Garcia-Rodriguez, Orlando ;
Lee, Yi Yang ;
Olvera-Vargas, Hugo ;
Deng, Fengxia ;
Wang, Zuxin ;
Lefebvre, Olivier .
ELECTROCHIMICA ACTA, 2018, 276 :12-20
[23]   Electrocoagulation and advanced electrocoagulation processes: A general review about the fundamentals, emerging applications and its association with other technologies [J].
Garcia-Segura, Sergi ;
Eiband, Maria Maesia S. G. ;
de Melo, Jailson Vieira ;
Martinez-Huitle, Carlos Alberto .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2017, 801 :267-299
[24]   The synergism between electro-Fenton and electrocoagulation process to remove Cu-EDTA [J].
Guan, Wei ;
Zhang, Baofeng ;
Tian, Shichao ;
Zhao, Xu .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 227 :252-257
[25]  
Gude V.G., 2015, Edorium Journal of Waste Management, V1, P10, DOI DOI 10.5348/W01-2015-2-ED-2
[26]   Size and structure evolution of kaolin-Al(OH)3 flocs in the electroflocculation process: A study using static light scattering [J].
Harif, T. ;
Adin, A. .
WATER RESEARCH, 2011, 45 (18) :6195-6206
[27]   Electrocoagulation versus chemical coagulation: Coagulation/flocculation mechanisms and resulting floc characteristics [J].
Harif, Tali ;
Khai, Moti ;
Adin, Avner .
WATER RESEARCH, 2012, 46 (10) :3177-3188
[28]   Struvite precipitation and phosphorus removal using magnesium sacrificial anode [J].
Kruk, Damian J. ;
Elektorowicz, Maria ;
Oleszkiewicz, Jan A. .
CHEMOSPHERE, 2014, 101 :28-33
[29]   Composite wastewater treatment by aerated electrocoagulation and modified peroxi-coagulation processes [J].
Kumar, Abhijeet ;
Nidheesh, P. V. ;
Kumar, M. Suresh .
CHEMOSPHERE, 2018, 205 :587-593
[30]   Ferrous and Ferric Ion Generation During Iron Electrocoagulation [J].
Lakshmanan, Divagar ;
Clifford, Dennis A. ;
Samanta, Gautam .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2009, 43 (10) :3853-3859