[1] |
ZHENG Q, ZHANG R, WANG Y, et al. Occurrence and distribution of antibiotics in the Beibu Gulf, China:Impacts of river discharge and aquaculture activities[J]. Marine Environmental Research, 2012, 78(8):26-33.
|
[2] |
SEBASTINE I M, WAKEMAN R J. Consumption and environmental hazards of pharmaceutical substances in the UK[J]. Process Safety & Environmental Protection, 2003, 81(4):229-235.
|
[3] |
FENG L, HULLEBUSCH E D V, RODRIGO M A, et al. Removal of residual anti-inflammatory and analgesic pharmaceuticals from aqueous systems by electrochemical advanced oxidation processes. A review[J]. Chemical Engineering Journal, 2013, 228(1):944-964.
|
[4] |
WANG J, WANG S. Removal of pharmaceuticals and personal care products (PPCPs) from wastewater:A review.[J]. Journal of Environmental Management, 2016, 182:620-640.
|
[5] |
MARTINEZHUITLE C A, RODRIGO M A, SIRES I, et al. Single and coupled electrochemical processes and reactors for the abatement of organic water pollutants:A critical review.[J]. Chemical Reviews, 2015, 115(24):13362-13407.
|
[6] |
SARKKA H, BHATNAGAR A, SILLANPAA M. Recent developments of electro-oxidation in water treatment-A review.[J]. Journal of Electroanalytical Chemistry, 2015, 754(2):46-56.
|
[7] |
朱连亮, 王玉民, 邵长林,等. 长寿命Ti/TiO2/SbO2-SnO2/SnO2-Sb-CeO2制备及电催化废水性能[J]. 环境化学, 2014,33(6):992-998.
ZHU L L, WANG Y M, SHAO C L, et al. Fabrication of long-life Ti/TiO2/SbO2-SnO2/SnO2-Sb-CeO2 electrodes and application in electrochemical wastewater treatment[J]. Environmental Chemistry, 2014, 33(6):992-998(in Chinese).
|
[8] |
邱凌峰, 倪尔灵. 电催化氧化阳极制备及其降酚特性[J]. 环境化学, 2010,29(6):1019-1026.
QIU L F, NI E L. Preparation of dimensionless stable anode in the electro-catalytic oxidation and its phenoldegrading characteristics[J]. Environmental Chemistry, 2010, 29(6):1019-1026(in Chinese).
|
[9] |
JAME S A, ZHOU Z. Electrochemical carbon nanotube filters for water and wastewater treatment[J]. Nanotechnology Reviews, 2016, 5(1):41-50.
|
[10] |
LI F, JIANG X, ZHAO J, et al. Graphene oxide:A promising nanomaterial for energy and environmental applications[J]. Nano Energy, 2015, 16:488-515.
|
[11] |
YI F, CHEN S, YUAN C. Effect of activated carbon fiber anode structure and electrolysis conditions on electrochemical degradation of dye wastewater[J]. Journal of Hazardous Materials, 2008, 157(1):79-87.
|
[12] |
MOTOC S, MANEA F, POP A, et al. Electrochemical degradation of pharmaceutical effluents on carbon-based electrodes[J]. Environmental Engineering & Management Journal, 2012, 11(11):627-634.
|
[13] |
DUAN T, WEN Q, YE C, et al. Enhancing electrocatalytic performance of Sb-doped SnO2, electrode by compositing nitrogen-doped graphene nanosheets[J]. Journal of Hazardous Materials, 2014, 280:304-314.
|
[14] |
GUO X, WAN J, YU X, et al. Study on preparation of SnO2-TiO2/Nano-graphite composite anode and electro-catalytic degradation of ceftriaxone sodium[J]. Chemosphere, 2016, 164:421-429.
|
[15] |
LI Y, LI Y, XIE B, et al. Efficient mineralization of ciprofloxacin using a 3D CexZr1-xO2/RGO composite cathode[J]. Environmental Science Nano, 2016, 4(2):425-436.
|
[16] |
HU X, YU Y, SUN Z. Preparation and characterization of cerium-doped multiwalled carbon nanotubes electrode for the electrochemical degradation of low-concentration ceftazidime in aqueous solutions[J]. Electrochimica Acta, 2016, 199:80-91.
|
[17] |
吴根英, 许双姐, 王君翔,等. FR-CNTs-PbO2/SnO2-Sb/Ti电极性能及电催化降解罗丹明B[J]. 环境化学, 2013,32(3):358-365.
WU G Y, XU S J, WANG J X, et al. Study on the properties of FR-CNTs-PbO2/SnO2-Sb/Ti electrode and its application in electro-catalytic degradation of Rhodamine B[J]. Environmental Chemistry, 2013, 32(3):358-365(in Chinese).
|
[18] |
温福雪, 王栋, 张兴文,等. Fe/CHI-MWNTs修饰石墨阴极电Fenton氧化4-硝基酚[J]. 水处理技术, 2014,40(9):62-65.
WEN F X, WANG D, ZHANG X W, et al. Electro-Fenton degradation of p-nitrophenol using fe/chi-mwnts modified graphite cathode[J]. Environmental Chemistry, 2014, 40(9):62-65(in Chinese).
|
[19] |
LIU Z, ZHU M, ZHAO L, et al. Aqueous tetracycline degradation by coal-based carbon electrocatalytic filtration membrane:Effect of nano antimony-doped tin dioxide coating[J]. Chemical Engineering Journal, 2016, 314:59-68.
|
[20] |
ISHIBASHI K I, FUJISHIMA A, WATANABE T, et al. Quantum yields of active oxidative species formed on TiO2 photocatalyst[J]. Journal of Photochemistry & Photobiology A Chemistry, 2000, 134(1-2):139-142.
|
[21] |
YONG Y A, YANG S Y, CHOI C, et al. Electrocatalytic activities of Sb-SnO2, and Bi-TiO2, anodes for water treatment:Effects of electrocatalyst composition and electrolyte[J]. Catalysis Today, 2017, 282:57-64.
|
[22] |
YANG K, LIU Y, QIAO J. Electrodeposition preparation of Ce-doped Ti/SnO2-Sb electrodes by using selected addition agents for efficient electrocatalytic oxidation of methylene blue in water[J]. Separation & Purification Technology, 2017, 189:459-466.
|
[23] |
XU Z, LIU H, NIU J, et al. Hydroxyl multi-walled carbon nanotube-modified nanocrystalline PbO2 anode for removal of pyridine from wastewater[J]. Journal of Hazardous Materials, 2017, 327:144-152.
|
[24] |
GARCIA-ESPINOZA J D, MIJAYLOVA-NACHEVA P, AVILES-FLORES M. Electrochemical carbamazepine degradation:Effect of the generated active chlorine, transformation pathways and toxicity[J]. Chemosphere, 2018, 192:142-151.
|
[25] |
LAN Y, COETSIER C, CAUSSERAND C, et al. On the role of salts for the treatment of wastewaters containing pharmaceuticals by electrochemical oxidation using a boron doped diamond anode[J]. Electrochimica Acta, 2017, 231:309-318.
|
[26] |
BURGOS-CASTILLO R C, SIRES I, SILLANPAA M, et al. Application of electrochemical advanced oxidation to bisphenol A degradation in water. Effect of sulfate and chloride ions[J]. Chemosphere, 2018, 194:812-820.
|
[27] |
DUAN X, MA F, YUAN Z, et al. Comparative studies on the electro-catalytic oxidation performance of surfactant-carbon nanotube-modified PbO2, electrodes[J]. Journal of Electroanalytical Chemistry, 2012, 677-680(4):90-100.
|