메뉴 건너뛰기




Volumn 241, Issue , 2014, Pages 167-174

Study of hydrogen gas production coupled with phenol electrochemical oxidation degradation at different stages

Author keywords

Electrochemical oxidation degradation; Energy efficiency; Hydrogen gas production; Kinetic; Phenol

Indexed keywords

DEGRADATION OF PHENOLS; EFFECTIVE APPROACHES; FIRST-ORDER MODELS; HYDROGEN GAS; INSTANTANEOUS CURRENT; ORGANIC WASTEWATER; OXIDATION REACTIONS; PHENOL DEGRADATION;

EID: 84891641553     PISSN: 13858947     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.cej.2013.12.031     Document Type: Article
Times cited : (44)

References (39)
  • 1
    • 80755136698 scopus 로고    scopus 로고
    • Degradation of phenol by a combined independent photocatalytic and electrochemical process
    • Zhang Feng, Li Miao, Li Wenqi, Feng Chuanping, Yunxiao Jin Xu, Guo Jianguo Cui Degradation of phenol by a combined independent photocatalytic and electrochemical process. Chem. Eng. J. 2011, 175:349-355.
    • (2011) Chem. Eng. J. , vol.175 , pp. 349-355
    • Zhang, F.1    Li, M.2    Li, W.3    Feng, C.4    Yunxiao Jin, X.5    Guo, J.C.6
  • 2
    • 84863406984 scopus 로고    scopus 로고
    • The removal of COD from coking wastewater using extraction replacement biodegradation coupling
    • Yuan Xiaoying, Sun Huifang, Guo Dongsheng The removal of COD from coking wastewater using extraction replacement biodegradation coupling. Desalination 2012, 289:45-50.
    • (2012) Desalination , vol.289 , pp. 45-50
    • Yuan, X.1    Sun, H.2    Guo, D.3
  • 3
    • 77955920637 scopus 로고    scopus 로고
    • Removal of phenol from petroleum refinery wastewater through adsorption on date-pit activated carbon
    • El-Naas Muftah H., Al-Zuhair Sulaiman, Alhaija Manal Abu Removal of phenol from petroleum refinery wastewater through adsorption on date-pit activated carbon. Chem. Eng. J. 2010, 162:997-1005.
    • (2010) Chem. Eng. J. , vol.162 , pp. 997-1005
    • El-Naas, M.H.1    Al-Zuhair, S.2    Alhaija, M.A.3
  • 4
    • 18344394806 scopus 로고    scopus 로고
    • Combined anaerobic-aerobic treatment of zao dyes-A short review of bioreactor studied
    • Van der Zee F.P., Villaverde S. Combined anaerobic-aerobic treatment of zao dyes-A short review of bioreactor studied. Water Res. 2005, 39:1425-1440.
    • (2005) Water Res. , vol.39 , pp. 1425-1440
    • Van der Zee, F.P.1    Villaverde, S.2
  • 5
    • 79953795041 scopus 로고    scopus 로고
    • Destination of organic pollutants during electrochemical oxidation of biologically-pretreated dye wastewater using boron-doped diamond anode
    • Zhu Xiuping, Ni Jinren, Wei Junjun, Xing Xuan, Li Hongna Destination of organic pollutants during electrochemical oxidation of biologically-pretreated dye wastewater using boron-doped diamond anode. J. Hazard. Mater. 2011, 189:127-133.
    • (2011) J. Hazard. Mater. , vol.189 , pp. 127-133
    • Zhu, X.1    Ni, J.2    Wei, J.3    Xing, X.4    Li, H.5
  • 7
    • 4444219574 scopus 로고    scopus 로고
    • Electrochemical treatment of industrial wastewater
    • Rajkumar D., Palanivelu K. Electrochemical treatment of industrial wastewater. J. Hazard. Mater. 2004, 113:125-131.
    • (2004) J. Hazard. Mater. , vol.113 , pp. 125-131
    • Rajkumar, D.1    Palanivelu, K.2
  • 8
    • 78049480454 scopus 로고    scopus 로고
    • Hydrogen gas production from electrohydrolysis of industrial wastewater organics by using photovoltaic cells (PVC)
    • Eker S., Kargi F. Hydrogen gas production from electrohydrolysis of industrial wastewater organics by using photovoltaic cells (PVC). Int. J. Hydrogen Energy 2010, 35:12761-12766.
    • (2010) Int. J. Hydrogen Energy , vol.35 , pp. 12761-12766
    • Eker, S.1    Kargi, F.2
  • 9
    • 84863779165 scopus 로고    scopus 로고
    • Production of hydrogen from renewable resources and its effectiveness
    • Olga B., Pavel S. Production of hydrogen from renewable resources and its effectiveness. Int. J. Hydrogen Energy 2012, 37:11563-11578.
    • (2012) Int. J. Hydrogen Energy , vol.37 , pp. 11563-11578
    • Olga, B.1    Pavel, S.2
  • 10
    • 84865480576 scopus 로고    scopus 로고
    • Optimal experimental conditions for hydrogen production using low voltage electrooxidation of organic wastewater feedstock
    • Cheng W., Singh N., Maciá-Agulló J.A., Stucky G.D., McFarlan E.W., Baltrusaitis J. Optimal experimental conditions for hydrogen production using low voltage electrooxidation of organic wastewater feedstock. Int. J. Hydrogen Energy 2012, 37:13304-13313.
    • (2012) Int. J. Hydrogen Energy , vol.37 , pp. 13304-13313
    • Cheng, W.1    Singh, N.2    Maciá-Agulló, J.A.3    Stucky, G.D.4    McFarlan, E.W.5    Baltrusaitis, J.6
  • 11
    • 71849112164 scopus 로고    scopus 로고
    • Electrochemical treatment of phenolic waters in presence of chloride with boron-doped diamond (BDD) anodes: experimental study and mathematical model
    • Mascia M., Vacca A., Polcaro A.M., Palmas S., Ruiz J.R., Da Pozzo A. Electrochemical treatment of phenolic waters in presence of chloride with boron-doped diamond (BDD) anodes: experimental study and mathematical model. J. Hazard. Mater. 2010, 174:314-322.
    • (2010) J. Hazard. Mater. , vol.174 , pp. 314-322
    • Mascia, M.1    Vacca, A.2    Polcaro, A.M.3    Palmas, S.4    Ruiz, J.R.5    Da Pozzo, A.6
  • 12
    • 75449117268 scopus 로고    scopus 로고
    • Effect of nitro subtituent on electrochemical oxidation of phenols at boron-doped diamond anodes
    • Jiang Y., Zhou X.P., Li H.N., Ni J.R. Effect of nitro subtituent on electrochemical oxidation of phenols at boron-doped diamond anodes. Chemosphere 2010, 1093-1099.
    • (2010) Chemosphere , pp. 1093-1099
    • Jiang, Y.1    Zhou, X.P.2    Li, H.N.3    Ni, J.R.4
  • 13
    • 79954571594 scopus 로고    scopus 로고
    • A comparative experimental study on methyl orange degradation by electrochemical oxidation on BDD and MMO electrodes
    • Zhou M.H., Särkkä H., Sillanpää M. A comparative experimental study on methyl orange degradation by electrochemical oxidation on BDD and MMO electrodes. Sep. Purif. Technol. 2011, 78:290-297.
    • (2011) Sep. Purif. Technol. , vol.78 , pp. 290-297
    • Zhou, M.H.1    Särkkä, H.2    Sillanpää, M.3
  • 14
    • 80052022713 scopus 로고    scopus 로고
    • Comparative efficiencies of the decolourisation of leather dyes by enzymatic and electrochemical treatments
    • Rosales E., Pazos M., Sanromán M.A. Comparative efficiencies of the decolourisation of leather dyes by enzymatic and electrochemical treatments. Desalination 2011, 278:312-317.
    • (2011) Desalination , vol.278 , pp. 312-317
    • Rosales, E.1    Pazos, M.2    Sanromán, M.A.3
  • 15
    • 80053225723 scopus 로고    scopus 로고
    • Electrochemical decolorization of textile dyes and removal of metal ions from textile dye and metal ion binary mixtures
    • Körbahti B.K., Artut K., Geçgel C., Özer A. Electrochemical decolorization of textile dyes and removal of metal ions from textile dye and metal ion binary mixtures. Chem. Eng. J. 2011, 173:677-688.
    • (2011) Chem. Eng. J. , vol.173 , pp. 677-688
    • Körbahti, B.K.1    Artut, K.2    Geçgel, C.3    Özer, A.4
  • 16
    • 79956098852 scopus 로고    scopus 로고
    • Studies on degradation of reactive textile dyes solution by electrochemical method
    • Kariyajjanavar P., Jogttappa N., Nayaka Y.A. Studies on degradation of reactive textile dyes solution by electrochemical method. J. Hazard. Mater. 2011, 190:952-961.
    • (2011) J. Hazard. Mater. , vol.190 , pp. 952-961
    • Kariyajjanavar, P.1    Jogttappa, N.2    Nayaka, Y.A.3
  • 17
    • 34447617334 scopus 로고    scopus 로고
    • Electrochemical oxidation of textile wastewater and its reuse
    • Mohan N., Balasubramanian N., Ahmed Basha C. Electrochemical oxidation of textile wastewater and its reuse. J. Hazard. Mater. 2007, 147:644-651.
    • (2007) J. Hazard. Mater. , vol.147 , pp. 644-651
    • Mohan, N.1    Balasubramanian, N.2    Ahmed Basha, C.3
  • 18
    • 77953757337 scopus 로고    scopus 로고
    • Degradation of atrazine by electrochemical advanced oxidation processes using a boron-doped diamond anode
    • Borràs N., Oliver R., Arias C., Brillas E. Degradation of atrazine by electrochemical advanced oxidation processes using a boron-doped diamond anode. J. Phys. Chem. A 2010, 144:6613-6621.
    • (2010) J. Phys. Chem. A , vol.144 , pp. 6613-6621
    • Borràs, N.1    Oliver, R.2    Arias, C.3    Brillas, E.4
  • 19
    • 77958489666 scopus 로고    scopus 로고
    • Electrochemical degradation of chlorpyrifos pesticide in aqueous solutions by anodic oxidation at boron-doped diamond electrodes
    • Samet Y., Agengui L., Abdelhédi R. Electrochemical degradation of chlorpyrifos pesticide in aqueous solutions by anodic oxidation at boron-doped diamond electrodes. Chem. Eng. J. 2010, 161:167-172.
    • (2010) Chem. Eng. J. , vol.161 , pp. 167-172
    • Samet, Y.1    Agengui, L.2    Abdelhédi, R.3
  • 20
    • 69949085867 scopus 로고    scopus 로고
    • Advanced treatment of biologically pretreated coking wastewater by electrochemical oxidation using boron-doped diamond electrodes
    • Zhu X.P., Ni J.R., Lai P. Advanced treatment of biologically pretreated coking wastewater by electrochemical oxidation using boron-doped diamond electrodes. Water Res. 2009, 43:4347-4355.
    • (2009) Water Res. , vol.43 , pp. 4347-4355
    • Zhu, X.P.1    Ni, J.R.2    Lai, P.3
  • 21
    • 70349386014 scopus 로고    scopus 로고
    • Evaluation of electrochemical oxidation techniques for degradation of dye effluents-A comparative approach
    • Raghu S., Lee Chang Woo, Chellammal S., Palanichamy S., Ahmed Basha C. Evaluation of electrochemical oxidation techniques for degradation of dye effluents-A comparative approach. J. Hazard. Mater. 2009, 171:748-754.
    • (2009) J. Hazard. Mater. , vol.171 , pp. 748-754
    • Raghu, S.1    Lee, C.W.2    Chellammal, S.3    Palanichamy, S.4    Ahmed Basha, C.5
  • 22
    • 77953338143 scopus 로고    scopus 로고
    • Integrated biological and electrochemical oxidation treatment for high toxicity pesticide pollutant
    • Liu L., Zhao G.H., Pang Y.N., Lei Y.Z., Gao J.X., Liu M.C. Integrated biological and electrochemical oxidation treatment for high toxicity pesticide pollutant. Ind. Eng. Chem. Res. 2010, 49:5496-5503.
    • (2010) Ind. Eng. Chem. Res. , vol.49 , pp. 5496-5503
    • Liu, L.1    Zhao, G.H.2    Pang, Y.N.3    Lei, Y.Z.4    Gao, J.X.5    Liu, M.C.6
  • 23
    • 44649154329 scopus 로고    scopus 로고
    • Effect of catalyst on electrolysis of ammonia effluents
    • Bonnin E.P., Biddinger E.J., Botte G.G. Effect of catalyst on electrolysis of ammonia effluents. J. Power Sources 2008, 182:284-290.
    • (2008) J. Power Sources , vol.182 , pp. 284-290
    • Bonnin, E.P.1    Biddinger, E.J.2    Botte, G.G.3
  • 24
    • 84856518982 scopus 로고    scopus 로고
    • Integration of hydrogen production and waste heat recovery in electrochemical wastewater treatment
    • Jiang J.Y., Hu J.L., Cui M.X., Tian H. Integration of hydrogen production and waste heat recovery in electrochemical wastewater treatment. Renewable Energy 2012, 43:179-182.
    • (2012) Renewable Energy , vol.43 , pp. 179-182
    • Jiang, J.Y.1    Hu, J.L.2    Cui, M.X.3    Tian, H.4
  • 26
    • 51049099981 scopus 로고    scopus 로고
    • Solar-powered electrochemical oxidation of organic compounds coupled with the cathodic production of molecular hydrogen
    • Park H., Vecitis C.D., Hoffmann M.R. Solar-powered electrochemical oxidation of organic compounds coupled with the cathodic production of molecular hydrogen. J. Phys. Chem. A 2008, 122:7616-7626.
    • (2008) J. Phys. Chem. A , vol.122 , pp. 7616-7626
    • Park, H.1    Vecitis, C.D.2    Hoffmann, M.R.3
  • 27
    • 65649154162 scopus 로고    scopus 로고
    • Electrochemical water splitting coupled with organic compound oxidation: the role of active chlorine species
    • Park H., Vecitis C.D., Hoffmann M.R. Electrochemical water splitting coupled with organic compound oxidation: the role of active chlorine species. J. Phys. Chem. C 2009, 113:7935-7945.
    • (2009) J. Phys. Chem. C , vol.113 , pp. 7935-7945
    • Park, H.1    Vecitis, C.D.2    Hoffmann, M.R.3
  • 28
    • 84870804936 scopus 로고    scopus 로고
    • Electrochemical oxidation and microfiltration of municipal wastewater with simultaneous hydrogen production: influence of organic and particulate matter
    • Park H., Choo K.H., Park H.S., Choi J., Hoffmann M.R. Electrochemical oxidation and microfiltration of municipal wastewater with simultaneous hydrogen production: influence of organic and particulate matter. Chem. Eng. J. 2013, 215-216:802-810.
    • (2013) Chem. Eng. J. , pp. 802-810
    • Park, H.1    Choo, K.H.2    Park, H.S.3    Choi, J.4    Hoffmann, M.R.5
  • 29
    • 42149178406 scopus 로고    scopus 로고
    • Simultaneous hydrogen production and electrochemical oxidation of organics using boron-doped diamond electrodes
    • Jiang J.Y., Chang M., Pan P. Simultaneous hydrogen production and electrochemical oxidation of organics using boron-doped diamond electrodes. Environ. Sci. Technol. 2008, 42:3059-3063.
    • (2008) Environ. Sci. Technol. , vol.42 , pp. 3059-3063
    • Jiang, J.Y.1    Chang, M.2    Pan, P.3
  • 30
    • 79952246604 scopus 로고    scopus 로고
    • Comparison of different electrodes in hydrogen gas production from electrohydrolysis of wastewater organic using photovoltaic cells (PVC)
    • Kargi F. Comparison of different electrodes in hydrogen gas production from electrohydrolysis of wastewater organic using photovoltaic cells (PVC). Int. J. Hydrogen Energy 2011, 36:3450-3456.
    • (2011) Int. J. Hydrogen Energy , vol.36 , pp. 3450-3456
    • Kargi, F.1
  • 31
    • 79958163081 scopus 로고    scopus 로고
    • Electrohydrolysis of landfill leachate organics for hydrogen gas production and COD removal
    • Kargi F., Catalkaya E.C. Electrohydrolysis of landfill leachate organics for hydrogen gas production and COD removal. Int. J. Hydrogen Energy 2011, 36:8252-8260.
    • (2011) Int. J. Hydrogen Energy , vol.36 , pp. 8252-8260
    • Kargi, F.1    Catalkaya, E.C.2
  • 32
    • 79551641130 scopus 로고    scopus 로고
    • Hydrogen gas production from waste anaerobic sludge by electrohydrolysis: effects of applied DC voltage
    • Kargi F., Catalkaya E.C., Uzuncar S. Hydrogen gas production from waste anaerobic sludge by electrohydrolysis: effects of applied DC voltage. Int. J. Hydrogen Energy 2011, 36:2049-2056.
    • (2011) Int. J. Hydrogen Energy , vol.36 , pp. 2049-2056
    • Kargi, F.1    Catalkaya, E.C.2    Uzuncar, S.3
  • 33
    • 84867377931 scopus 로고    scopus 로고
    • Oxidative removal of phenol from water catalyzed by nickel hydroxide
    • Saeed M., Ilyas M. Oxidative removal of phenol from water catalyzed by nickel hydroxide. Appl. Catal. B 2013, 129:247-254.
    • (2013) Appl. Catal. B , vol.129 , pp. 247-254
    • Saeed, M.1    Ilyas, M.2
  • 34
    • 34548137689 scopus 로고    scopus 로고
    • Production of hydrogen from domesticwastewater using a bioelectrochemically assisted microbial reactor (BEAMR)
    • Ditzig J., Liu H., Logan B.E. Production of hydrogen from domesticwastewater using a bioelectrochemically assisted microbial reactor (BEAMR). Int. J. Hydrogen Energy 2007, 32:2296-2304.
    • (2007) Int. J. Hydrogen Energy , vol.32 , pp. 2296-2304
    • Ditzig, J.1    Liu, H.2    Logan, B.E.3
  • 35
    • 0040999050 scopus 로고
    • Anodic oxidation of phenol for waste water treatment
    • Comninellis Ch., Pulgarin C. Anodic oxidation of phenol for waste water treatment. J. Appl. Electrochem. 1991, 21:703-708.
    • (1991) J. Appl. Electrochem. , vol.21 , pp. 703-708
    • Comninellis, C.1    Pulgarin, C.2
  • 37
    • 0346317143 scopus 로고    scopus 로고
    • Electrochemical incineration of prganic pollutants on boron-doped diamond electrode. Evidence for direct electrocemical oxidation pathway
    • Zhi J.F., Wang H.B., Nakashima T., Rao T.N., Fujishima A. Electrochemical incineration of prganic pollutants on boron-doped diamond electrode. Evidence for direct electrocemical oxidation pathway. J. Phys. Chem. B 2003, 107:13389.
    • (2003) J. Phys. Chem. B , vol.107 , pp. 13389
    • Zhi, J.F.1    Wang, H.B.2    Nakashima, T.3    Rao, T.N.4    Fujishima, A.5
  • 39
    • 84867397489 scopus 로고    scopus 로고
    • Electro-hydrolysis of cheese whey solution for hydrogen gas production and chemical oxygen demand (COD) removal using photo-voltaic cells (PVC)
    • Kargi F., Uzuncar S. Electro-hydrolysis of cheese whey solution for hydrogen gas production and chemical oxygen demand (COD) removal using photo-voltaic cells (PVC). Int. J. Hydrogen Energy 2012, 37:15841-15849.
    • (2012) Int. J. Hydrogen Energy , vol.37 , pp. 15841-15849
    • Kargi, F.1    Uzuncar, S.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.