References
- A. Shimizu, M. Tokumura, K. Nakajima, Y. Kawase, Phenol
removal using zero-valent iron powder in the presence of
dissolved oxygen: Roles of decomposition by the Fenton reaction
and adsorption/precipitation, J. Hazard. Mater., 201 (2012)
60–67.
- S. Sansuk, S. Srijaranai, S. Srijaranai, A new approach for
removing anionic organic dyes from wastewater based on
electro statically driven assembly, Environ. Sci. Technol., 50
(2016) 6477–6484.
- W.F. Khalik, S.-A. Ong, L.-N. Ho, Y.-S. Wong, N.A. Yusoff, F.
Ridwan, Evaluation on the molecular structure of azo dye in
photo catalytic mineralization under solar light irradiation,
Desal. Water Treat., 55 (2015) 2229–2236.
- P.V. Nidheesh, R. Gandhimathi, S.T. Ramesh, Degradation of
dyes from aqueous solution by Fenton processes: a review,
Environ. Sci. Pollut. R., 20 (2013) 2099–2132.
- A. Thiam, I. Sires, E. Brillas, Treatment of a mixture of food
color additives (E122, E124 and E129) in different water matrices
by UVA and solar photo electro-Fenton, Water Res., 81
(2015) 178–187.
- U. Kalsoom, H.N. Bhatti, M. Asgher, Characterization of plant
peroxidases and their potential for degradation of dyes: a
review, Appl. Biochem. Biotech., 176 (2015) 1529–1550.
- R. Khan, P. Bhawana, M.H. Fulekar, Microbial decolorization
and degradation of synthetic dyes: a review, Rev. Environ. Sci.
Biol., 12 (2013) 75–97.
- N. Dafale, S. Wate, S. Meshram, N.R. Neti, Bioremediation of
wastewater containing azo dyes through sequential anaerobic-aerobic bioreactor system and its biodiversity, Environ.
Rev., 18 (2010) 21–36.
- F.R. Van der Zee, F.J. Cervantes, Impact and application of
electron shuttles on the redox (bio) transformation of contaminants:
A review, Biotechnol. Adv., 27 (2009) 256–277.
- A. Colunga, J.R. Rangel-Mendez, L.B. Celis, F.J. Cervantes,
Graphene oxide as electron shuttle for increased redox conversion
of contaminants under methanogenic and sulfate-reducing
conditions, Bioresour. Technol., 175 (2015) 309–314.
- E.J. O’Loughlin, Effects of electron transfer mediators on the
bioreduction of lepidocrocite (gamma-FeOOH) by Shewanella
putrefaciens CN32, Environ. Sci. Technol., 42 (2008) 6876–6882.
- F.P. van der Zee, S. Villaverde, Combined anaerobic-aerobic
treatment of azo dyes - A short review of bioreactor studies,
Water Res., 39 (2005) 1425–1440.
- Y. Mu, K. Rabaey, R.A. Rozendal, Z.G. Yuan, J. Keller, Decolorization
of azo dyes in bioelectro chemical systems, Environ.
Sci. Technol., 43 (2009) 5137–5143.
- S. Sreelatha, G. Velvizhi, A.N. Kumar, S.V. Mohan, Functional
behavior of bio-electro chemical treatment system with
increasing azo dye concentrations: Synergistic interactions of
biocatalyst and electrode assembly, Bioresour. Technol., 213
(2016) 11–20.
- A. Aris, K. Muda, M.R. Salim, Z. Ibrahim, COD and color
removal from textile effluent using granular sludge biomass:
effect of substrate and riboflavin, Desal. Water Treat., 52 (2014)
7366–7376.
- C. Aranda-Tamaura, M.I. Estrada-Alvarado, A.C. Texier, F.
Cuervo, J. Gomez, F.J. Cervantes, Effects of different quinoid
redox mediators on the removal of sulphide and nitrate via
denitrification, Chemosphere, 69 (2007) 1722–1727.
- Z.X. Xiao, T. Awata, D.D. Zhang, C.F. Zhang, Z.L. Li, A. Katayama,
Enhanced denitrification of Pseudomonas stutzeri by a
bioelectro chemical system assisted with solid-phase humin, J.
Biosci. Bioeng., 122 (2016) 85–91.
- F. Aulenta, V. Di Maio, T. Ferri, M. Majone, The humic acid analogue
antraquinone-2,6-disulfonate (AQDS) serves as an electron
shuttle in the electricity-driven microbial dechlorination
of trichloroethene to cis-dichloroethene, Bioresour Technol.,
101 (2010) 9728–9733.
- A. Ramos-Ruiz, J.A. Field, J.V. Wilkening, R. Sierra-Alvarez,
Recovery of elemental tellurium nanoparticles by the reduction
of tellurium oxyanions in a methanogenic microbial consortium,
Environ. Sci. Technol., 50 (2016) 1492–1500.
- L.A. Liu, Y. Yuan, F.B. Li, C.H. Feng, In-situ Cr(VI) reduction
with electro generated hydrogen peroxide driven by iron-reducing
bacteria, Bioresour. Technol., 102 (2011) 2468–2473.
- B. Shan, Y.Z. Cai, J.D. Brooks, H. Corke, Antibacterial properties
and major bioactive components of cinnamon stick
(Cinnamomum burmannii): Activity against foodborne
pathogenic bacteria, J. Agr. Food Chem., 55 (2007) 5484–
5490.
- B. Kavita, H. Keharia, Anthraquinone 2-sulfonic acid-mediated
reduction of Cr(VI) by Bacillus sp. BT1, Desal. Water
Treat., 53 (2015) 221–229.
- J. Huang, M. Wu, J. Tang, R. Zhou, J. Chen, W. Han, Z. Xie,
Enhanced bio-reduction of hexavalent chromium by an
anaerobic consortium using henna plant biomass as electron
donor and redox mediator, Desal. Water Treat., 57 (2016)
15125–15132.
- S. Qiao, T. Tian, J.T. Zhou, Effects of quinoid redox mediators
on the activity of anammox biomass, Bioresour. Technol., 152
(2014) 116–123.
- A. Keck, J. Klein, M. Kudlich, A. Stolz, H.J. Knackmuss, R.
Mattes, Reduction of azo dyes by redox mediators originating
in the naphthalene sulfonic acid degradation pathway
of Sphingomonas sp. strain BN6, Appl. Environ. Microb., 63
(1997) 3684–3690.
- J.B. Guo, L. Kang, J.L. Yang, X.L. Wang, J. Lian, H.B. Li, Y.K.
Guo, Y.Y. Wang, Study on a novel non-dissolved redox mediator
catalyzing biological denitrification (RMBDN) technology,
Bioresour. Technol., 101 (2010) 4238–4241.
- R.B. Dai, X.G. Chen, C.Y. Ma, X.Y. Xiang, G. Li, Insoluble/immobilized
redox mediators for catalyzing anaerobic bio-reduction
of contaminants, Rev. Environ. Sci. Biol., 15 (2016) 379–409.
- J.B. Guo, J.T. Zhou, D. Wang, C.P. Tian, P. Wang, M.S. Uddin, H.
Yu, Biocalalyst effects of immobilized anthraquin one on the
anaerobic reduction of azo dyes by the salt-tolerant bacteria,
Water Res., 41 (2007) 426–432.
- H. Lu, J.T. Zhou, J. Wang, W.L. Si, H. Teng, G.F. Liu, Enhanced
biodecolorization of azo dyes by anthraquinone-2-sulfonate
immobilized covalently in polyurethane foam, Bioresour.
Technol., 101 (2010) 7185–7188.
- Q. Xu, J.B. Guo, C.M. Niu, J. Lian, Z.H. Hou, Y.K. Guo, S.Y. Li,
The denitrification characteristics of novel functional biocarriers
immobilised by non-dissolved redox mediators, Biochem.
Eng. J., 95 (2015) 98–103.
- F.J. Cervantes, A. Garcia-Espinosa, M. Antonieta Moreno-Reynosa, J.R. Rangel-Mendez, Immobilized redox mediators
on anion exchange resins and their role on the reductive
decolorization of azo dyes, Environ. Sci. Technol., 44 (2010)
1747–1753.
- L.H. Alvarez, M.A. Perez-Cruz, J.R. Rangel-Mendez, F.J.
Cervantes, Immobilized redox mediator on metal-oxides
nanoparticles and its catalytic effect in a reductive decolorization
process, J. Hazard. Mater., 184 (2010) 268–272.
- R.M. Kakhki, Application of magnetic nanoparticles modified
with cyclodextrins as efficient adsorbents in separation systems,
J. Incl. Phenom. Macro., 82 (2015) 301–310.
- F.J. Cervantes, R. Gomez, L.H. Alvarez, C.M. Martinez, V. Hernandez-Montoya, Efficient anaerobic treatment of synthetic
textile wastewater in a UASB reactor with granular sludge
enriched with humic acids supported on alumina nanoparticles,
Biodegradation, 26 (2015) 289–298.
- S. Fathi Karkan, M. Mohammadhosseini, Y. Panahi, M. Milani,
N. Zarghami, A. Akbarzadeh, E. Abasi, A. Hosseini, S. Davaran,
Magnetic nanoparticles in cancer diagnosis and treatment:
a review, Artif. Cell. Nanomed. B., 45 (2017) 1–5.
- J.-F. Liu, Z.-S. Zhao, G.-B. Jiang, Coating Fe3O4 magnetic nanoparticles
with humic acid for high efficient removal of heavy metals
in water, Environ. Sci. Technol., 42 (2008) 6949–6954.
- C.T. Yavuz, J.T. Mayo, W.W. Yu, A. Prakash, J.C. Falkner, S.
Yean, L. Cong, H.J. Shipley, A. Kan, M. Tomson, D. Natelson,
V.L. Colvin, Low-field magnetic separation of mono disperse
Fe3O4 nano crystals, Science, 314 (2006) 964–967.
- S. Wu, A. Sun, F. Zhai, J. Wang, W. Xu, Q. Zhang, A.A. Volinsky,
Fe3O4 magnetic nanoparticles synthesis from tailings by
ultrasonic chemical co-precipitation, Mater. Lett., 65 (2011)
1882–1884.
- J.B. Guo, H.J. Liu, J.H. Qua, J. Lian, L.J. Zhao, W. Jefferson, J.L.
Yang, The structure activity relationship of non-dissolved
redox mediators during azo dye bio-decolorization processes.
Bioresour. Technol., 112 (2012) 350–354.
- X. Qu, P.J.J. Alvarez, Q. Li, Applications of nano technology in
water and wastewater treatment, Water Res., 47 (2013) 3931–3946.
- P. Xu, G.M. Zeng, D.L. Huang, C.L. Feng, S. Hu, M.H. Zhao,
C. Lai, Z. Wei, C. Huang, G.X. Xie, Z.F. Liu, Use of iron oxide
nano materials in wastewater treatment: A review, Sci. Total
Environ., 424 (2012) 1–10.
- J.M. Wu, W. Wen, Catalyzed degradation of azo dyes under
ambient conditions, Environ. Sci. Technol., 44 (2010) 9123–
9127.