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Articles

Comparison of Performance in a Bioelectrochemical System for Simultaneous Denitrification and Vanadate (V) Removal Using Hydrogen as the Sole Electron Donor

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Pages 301-307 | Received 18 Jun 2019, Accepted 21 Nov 2019, Published online: 29 Nov 2019

References

  • Ayoub K, Hullebusch EDV, Cassir M, Bermond A. 2010. Application of advanced oxidation processes for TNT removal: a review. J Hazard Mater 178(1–3):10–28.
  • Bond DR, Holmes DE, Tender LM, Lovley DR. 2002. Electrode-reducing microorganisms that harvest energy from marine sediments. Science 295(5554):483–485.
  • Cao X, Diao M, Zhang B, Liu H, Wang S, Yang M. 2017. Spatial distribution of vanadium and microbial community responses in surface soil of Panzhihua mining and smelting area, China. Chemosphere 183:9–17.
  • Cervantes C, Ji G, Ramírez JL, Silver S. 1994. Resistance to arsenic compounds in microorganisms. Fems Microbiol Rev 15(4):355–367.
  • Chen G, Liu H. 2017. Understanding the reduction kinetics of aqueous vanadium (V) and transformation products using rotating ring-disk electrodes. Environ Sci Technol 51(20):11643–11651.
  • Feleke Z, Araki K, Sakakibara Y, Watanabe T, Kuroda M. 1998. Selective reduction of nitrate to nitrogen gas in a biofilm-electrode reactor. Water Res 32(9):2728–2734.
  • Feng H, Zhang X, Liang Y, Wang M, Shen D, Ding Y, Huang B, Shentu J. 2014. Enhanced removal of p-fluoronitrobenzene using bioelectrochemical system. Water Res 60:54–63.
  • Fowdar HS, Hatt BE, Breen P, Cook PLM, Deletic A. 2015. Evaluation of sustainable electron donors for nitrate removal in different water media. Water Res 85:487–496.
  • Ghafari S, Hasan M, Aroua MK. 2008. Bio-electrochemical removal of nitrate from water and wastewater—a review. Bioresour Technol 99(10):3965–3974.
  • Ghafari S, Hasan M, Aroua MK. 2009. Nitrate remediation in a novel upflow bio-electrochemical reactor (UBER) using palm shell activated carbon as cathode material. Electrochim Acta 54(17):4164–4171.
  • He Y, Wang Y, Song X. 2016. High-effective denitrification of low C/N wastewater by combined constructed wetland and biofilm-electrode reactor (CW–BER). Bioresour Technol 203:245–251.
  • Huang LP, Cheng SA, Chen GH. 2011. Bioelectrochemical systems for efficient recalcitrant wastes treatment. J Chem Technol Biotechnol 86(4):481–491.
  • Jiang Y, Zhang B, He C, Shi J, Borthwick AGL, Huang X. 2018. Synchronous microbial vanadium (V) reduction and denitrification in groundwater using hydrogen as the sole electron donor. Water Res 141:289–296.
  • Liu H, Zhang B, Yuan H, Cheng Y, Wang S, He Z. 2017. Microbial reduction of vanadium (V) in groundwater: interactions with coexisting common electron acceptors and analysis of microbial community. Environ Pollut 231:1362–1369.
  • Lucchetti R, Onotri L, Clarizia L, Natale FD, Somma ID, Andreozzi R, Marotta R. 2017. Removal of nitrate and simultaneous hydrogen generation through photocatalytic reforming of glycerol over “in situ” prepared zero-valent nano copper/P25. Appl Catal B Environ 202:539–549.
  • Mellor RB, Ronnenberg J, Campbell WH, Diekmann S. 1992. Reduction of nitrate and nitrite in water by immobilized enzymes. Nature 23:717–719.
  • Park JBK, Craggs RJ, Sukias J. 2008. Treatment of hydroponic wastewater by denitrification filters using plant prunings as the organic carbon source. Bioresour Technol 99(8):2711–2716.
  • Qiu R, Zhang B, Li J, Lv Q, Wang S, Gu Q. 2017. Enhanced vanadium (V) reduction and bioelectricity generation in microbial fuel cells with biocathode. J Power Sources 359:379–383.
  • Reul BA, Amin SS, Buchet JP, Ongemba LN, Crans DC, Brichard SM. 1999. Effects of vanadium complexes with organic ligands on glucose metabolism: a comparison study in diabetic rats. Brit J Pharmacol 126(2):467–477.
  • Tong S, Zhang B, Feng C, Zhao Y, Chen N, Hao C, Pu J, Zhao L. 2013. Characteristics of heterotrophic/biofilm-electrode autotrophic denitrification for nitrate removal from groundwater. Bioresour Technol 148:121–127.
  • Wan D, Liu H, Liu R, Qu J. 2011. Study of a combined sulfur autotrophic with proton-exchange membrane electrodialytic denitrification technology: sulfate control and pH balance. Bioresour Technol 102(23):10803–10809.
  • Wang H, Ren ZJ. 2014. Bioelectrochemical metal recovery from wastewater: a review. Water Res 66:219–232.
  • Wang H, Zhang S, Wang J, Song Q, Zhang W, He Q, Song J, Ma F. 2018. Comparison of performance and microbial communities in a bioelectrochemical system for simultaneous denitrification and chromium removal: effects of pH. Process Biochem 73:154–161.
  • Wang Q, Feng C, Zhao Y, Hao C. 2009. Denitrification of nitrate contaminated groundwater with a fiber-based biofilm reactor. Bioresour Technol 99:2223–2227.
  • Wei TM, Aroua MKT, Chakrabarti MH, Noor IM, Irfan MF, Low C. 2013. A review on the effect of bio-electrodes on denitrification and organic matter removal processes in bio-electrochemical systems. J Ind Eng Chem 19:1–13.
  • Xu X, Xia S, Zhou L, Zhang Z, Rittmann BE. 2015. Bioreduction of vanadium (V) in groundwater by autohydrogentrophic bacteria: mechanisms and microorganisms. J Environ Sci-China 30:122–128.
  • Zhang BG, Zhao HZ, Shi CH, Zhou SG, Ni JR. 2009. Simultaneous removal of sulfide and organics with vanadium (V) reduction in microbial fuel cells. J Chem Technol Biotechnol 84(12):1780–1786.
  • Zhao HP, Van Ginkel S, Tang Y, Kang D, Rittmann B, Krajmalnik-Brown R. 2011. Interactions between perchlorate and nitrate reductions in the biofilm of a hydrogen-based membrane biofilm reactor. Environ Sci Technol 45(23):10155–10162.
  • Zhong Y, Li X, Yang Q, Wang D, Yao F, Li X, Zhao J, Xu Q, Zhang C, Zeng G. 2016. Complete bromate and nitrate reduction using hydrogen as the sole electron donor in a rotating biofilm-electrode reactor. J Hazard Mater 307:82–90.

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