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Enhanced rhodamine b and coking wastewater degradation and simultaneous electricity generation via anodic g-c3n4/fe-0(1%)/tio2 and cathodic wo3 in photocatalytic fuel cell system under visible light irradiation
Rabe, Kane1,2; Liu, Lifen1; Nahyoon, Noor Ahmed1; Zhang, Yizhen; Idris, Ahmed Mahmoud3
刊名Electrochimica acta
2019-03-01
卷号298页码:430-439
关键词Rhodamine b Coking wastewater Photocatalytic fuel cell Zscheme g-c3n4/fe0/tio2 Visible-light
ISSN号0013-4686
DOI10.1016/j.electacta.2018.12.121
通讯作者Liu, lifen(lifenliu@dlut.edu.cn)
英文摘要Degradation of pollutants can be integrated with electricity generation in photocatalytic fuel cell under light irradiation or self-powered fuel cell in the dark. in fuel cell driven by electrode reactions, the electrode reduction and oxidation transforms chemical energy in pollutants into electrical energy. in this work, rhodamine b and coking wastewater were treated, using an efficient z-scheme g-c3n4/fe-0(1%)/tio2 as an anodic catalyst and wo3 as a cathodic catalyst. after 100 min of reaction in a single chamber fuel cell with 10 omega of external resistance, in 0.05m na2so4 electrolyte, the paired stainless-steel electrodes loaded respectively with g-c3n4/fe-0(1%)/tio2 and wo3, degraded 98% rhodamine b and generated 0.95 v cell voltage under 50 w visible-light irradiation, while removed 60% rhb and generated 0.5 v without light. to investigate the pfc performance of g-c3n4/fe-0(1%)/tio2 in treating real coking wastewater, at optimal ph 2, 91% chemical oxygen demand (cod) and 89% total organic carbon (toc) were removed and generated 0.3 v cell voltage. the influence of ph on photocatalytic degradation performance and cell voltage are evaluated. the high cell voltage is attributed to the very low impedance of the g-c3n4/fe-0(1%)/tio2 loaded anode. the excellent electrochemical properties of paired electrodes help in generating higher current density, due to the increased photocatalyst activity of the tridimensional catalyst as proved by electron spinning resonance spectrum, photoluminescence, and electric impedance spectrum analysis. (c) 2018 elsevier ltd. all rights reserved.
WOS关键词SENSITIZED SOLAR-CELLS ; Z-SCHEME PHOTOCATALYST ; GRAPHENE OXIDE ; PHOTOELECTROCATALYTIC DEGRADATION ; ORGANIC POLLUTANTS ; PERFORMANCE ; EFFICIENT ; PFC ; NANOSHEETS ; MEMBRANE
WOS研究方向Electrochemistry
WOS类目Electrochemistry
语种英语
出版者PERGAMON-ELSEVIER SCIENCE LTD
WOS记录号WOS:000456432200046
内容类型期刊论文
URI标识http://www.corc.org.cn/handle/1471x/2372909
专题大连化学物理研究所
通讯作者Liu, Lifen
作者单位1.Dalian Univ Technol, Sch Environm Sci & Technol, Key Lab Ind Ecol & Environm Engn, MOE, Dalian 116024, Liaoning, Peoples R China
2.Dalian Univ Technol, Sch Food & Environm, Panjin 124221, Liaoning, Peoples R China
3.Univ Chinese Acad Sci, Dalian Inst Chem Phys, Dalian 116023, Liaoning, Peoples R China
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GB/T 7714
Rabe, Kane,Liu, Lifen,Nahyoon, Noor Ahmed,et al. Enhanced rhodamine b and coking wastewater degradation and simultaneous electricity generation via anodic g-c3n4/fe-0(1%)/tio2 and cathodic wo3 in photocatalytic fuel cell system under visible light irradiation[J]. Electrochimica acta,2019,298:430-439.
APA Rabe, Kane,Liu, Lifen,Nahyoon, Noor Ahmed,Zhang, Yizhen,&Idris, Ahmed Mahmoud.(2019).Enhanced rhodamine b and coking wastewater degradation and simultaneous electricity generation via anodic g-c3n4/fe-0(1%)/tio2 and cathodic wo3 in photocatalytic fuel cell system under visible light irradiation.Electrochimica acta,298,430-439.
MLA Rabe, Kane,et al."Enhanced rhodamine b and coking wastewater degradation and simultaneous electricity generation via anodic g-c3n4/fe-0(1%)/tio2 and cathodic wo3 in photocatalytic fuel cell system under visible light irradiation".Electrochimica acta 298(2019):430-439.
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