Improved degradation of the aqueous flutriafol using a nanostructure macroporous PbO2 as reactive electrochemical membrane

被引:65
作者
Liu, Siqi [1 ]
Wang, Yi [1 ]
Zhou, Xiezhen [1 ]
Han, Weiqing [1 ]
Li, Jiansheng [1 ]
Sun, Xiuyun [1 ]
Shen, Jinyou [1 ]
Wang, Lianjun [1 ]
机构
[1] Nanjing Univ Sci & Technol, Sch Environm & Biol Engn, Key Lab Jiangsu Prov Chem Pollut Control & Resour, Nanjing 210094, Jiangsu, Peoples R China
关键词
Electrochemical oxidation; Macroporous PbO2 electrode; Mass-transfer; Electrochemical filtration reactor; Flutriafol; WASTE-WATER TREATMENT; ADVANCED OXIDATION PROCESSES; DOPED DIAMOND ELECTRODES; SOLAR PHOTOELECTRO-FENTON; MASS-TRANSFER; HYDROXYL RADICALS; ORGANIC POLLUTANTS; OXAMIC ACIDS; OXALIC-ACID; ANODE;
D O I
10.1016/j.electacta.2017.09.055
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
In order to develop an electrochemical technology with low-energy consumption for water treatment applications, we fabricated a novel reactive electrochemical membrane (REM) operated in cross-flow filtration mode. The REM with three-dimensional ordered macroporous PbO2 (3DEM-PbO2) film was synthesized via templated deposition that was based on a porous Ti substrate. Compared to conventional flat Ti/PbO2 (F-Ti/PbO2) electrode, the 3DEM-PbO2 possessed larger specific surface area (38.89 m(2) g(-1)), higher oxygen evolution potential (OEP, 1.9 V), larger Voltammetric charge (238 mC cm(-2)) and smaller electron transfer resistance (1.43 V). Furthermore, advection-enhanced mass transfer was obtained when the 3DEM-PbO2 REM is operated in an electrochemical filtration reactor (EFR), relative to a traditional batch reactor (BR). The electrochemical mineralization experiments with flutriafol (FTF) demonstrated that the 3DEM-PbO2 REM operated in the EFR was active for FTF and TOC removal at a low current density of 5 mA cm(-2). The oxidation current efficiency of REM operated in a EFR was much higher than that of conventional electrochemical system, and the corresponding energy consumption was lower (0.0505 kWh g(-1) FTF, at FTF removal of 75%). The hydroxyl radicals (center dot OH) production and its utilization rate of the REM was significantly improved, resulting from a combination of the strong catalytic activity of 3DEM-PbO2 and the enhanced mass transfer by filtration mode. Furthermore, computational fluid dynamics (CFD) method was carried out to help explain the improvement of oxidation performance with 3DEM-PbO2 REM in a EFR. Eventually, the electrocatalysis experiments of practical wastewater demonstrated the extreme promise of 3DEM-PbO2 REM for tailwater advanced treatment applications. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:357 / 367
页数:11
相关论文
共 61 条
[1]  
[Anonymous], PULSE RADIOLYTIC STU
[2]   INNER AND OUTER ACTIVE SURFACE OF RUO2 ELECTRODES [J].
ARDIZZONE, S ;
FREGONARA, G ;
TRASATTI, S .
ELECTROCHIMICA ACTA, 1990, 35 (01) :263-267
[3]   Templated electrochemical deposition of nanostructured macroporous PbO2 [J].
Bartlett, PN ;
Dunford, T ;
Ghanem, MA .
JOURNAL OF MATERIALS CHEMISTRY, 2002, 12 (10) :3130-3135
[4]   Aniline degradation by Electro-Fenton® and peroxi-coagulation processes using a flow reactor for wastewater treatment [J].
Brillas, E ;
Casado, J .
CHEMOSPHERE, 2002, 47 (03) :241-248
[5]   Electrochemical oxidation of several chlorophenols on diamond electrodes:: Part II.: Influence of waste characteristics and operating conditions [J].
Cañizares, P ;
García-Gómez, J ;
Sáez, C ;
Rodrigo, MA .
JOURNAL OF APPLIED ELECTROCHEMISTRY, 2004, 34 (01) :87-94
[6]   Electrochemical incineration of omeprazole in neutral aqueous medium using a platinum or boron-doped diamond anode: Degradation kinetics and oxidation products [J].
Cavalcanti, Eliane Bezerra ;
Garcia-Segura, Sergi ;
Centellas, Francesc ;
Brillas, Enric .
WATER RESEARCH, 2013, 47 (05) :1803-1815
[7]   Critical review of electrochemical advanced oxidation processes for water treatment applications [J].
Chaplin, Brian P. .
ENVIRONMENTAL SCIENCE-PROCESSES & IMPACTS, 2014, 16 (06) :1182-1203
[8]   Electrochemical degradation of m-cresol using porous carbon-nanotube-containing cathode and Ti/SnO2-Sb2O5-IrO2 anode: Kinetics, byproducts and biodegradability [J].
Chu, Yanyang ;
Zhang, Dongmei ;
Liu, Lei ;
Qian, Yi ;
Li, Lingling .
JOURNAL OF HAZARDOUS MATERIALS, 2013, 252 :306-312
[9]   ELECTROCATALYSIS IN THE ELECTROCHEMICAL CONVERSION/COMBUSTION OF ORGANIC POLLUTANTS FOR WASTE-WATER TREATMENT [J].
COMNINELLIS, C .
ELECTROCHIMICA ACTA, 1994, 39 (11-12) :1857-1862
[10]   Electrocatalytic generation of radical intermediates over lead dioxide electrode doped with fluoride [J].
Cong, Yanqing ;
Wu, Zucheng .
JOURNAL OF PHYSICAL CHEMISTRY C, 2007, 111 (08) :3442-3446