References
- X.H. Peng, X.H. Pan, X. Wang, D.Y. Li, P.F. Huang, G.H. Qiu,
K. Shan, X.Z. Chu, Accelerated removal of high concentration
p-chloronitrobenzene using bioelectrocatalysis process and its
microbial communities analysis, Bioresour. Technol., 249 (2018)
844–850.
- N. Azbar, T. Yonar, K. Kestioglu, Comparison of various
advanced oxidation processes and chemical treatment methods
for COD and color removal from a polyester and acetate fiber
dyeing effluent, Chemosphere, 55 (2004) 35–43.
- D.L. Huang, C.J. Hu, G.M. Zeng, M. Cheng, P. Xu, X.M. Gong,
R.Z. Wang, W.J. Xue, Combination of Fenton processes and
biotreatment for wastewater treatment and soil remediation,
Sci. Total Environ., 574 (2017) 1599–1610.
- X.Y. Yang, H.Y. Wei, C.X. Zhu, B. Geng, Biodegradation of
atrazine by the novel Citricoccus sp. strain TT3, Ecotoxicol.
Environ. Saf., 147 (2018) 144–150.
- M. Fedeila, Z. Hachaichi-Sadouk, L.F. Bautista, R. Simarro,
F. Nateche, Biodegradation of anionic surfactants by Alcaligenes
faecalis, Enterobacter cloacae and Serratia marcescens strains
isolated from industrial wastewater, Ecotoxicol. Environ. Saf.,
163 (2018) 629–635.
- M.J. Qu, N. Li, H.D. Li, T.W. Yang, W. Liu, Y.P. Yan,
X.H. Feng, D.W. Zhu, Phytoextraction and biodegradation of
atrazine by Myriophyllum spicatum and evaluation of bacterial
communities involved in atrazine degradation in lake sediment,
Chemosphere, 209 (2018) 439–448.
- S.H. Cheng, N. Li, L. Jiang, Y.T. Li, B.H. Xu, W.Z. Zhou,
Biodegradation of metal complex Naphthol Green B and
formation of iron-sulfur nanoparticles by marine bacterium
Pseudoalteromonas sp. CF10–13, Bioresour. Technol., 273 (2019)
49–55.
- L. Fu, Y.N. Bai, Y.Z. Lu, J. Ding, D.D. Zhou, R.J.X. Zeng,
Degradation of organic pollutants by anaerobic methaneoxidizing
microorganisms using methyl orange as example,
J. Hazard. Mater., 364 (2019) 264–271.
- J.D. Rodgers, N.J. Bunce, Treatment methods for the remediation
of nitroaromatic explosives, Water Res., 35 (2001) 2101–2112.
- F.P. van der Zee, R.H. Bouwman, D.P. Strik, G. Lettinga,
J.A. Field, Application of redox mediators to accelerate the
transformation of reactive azo dyes in anaerobic bioreactors,
Biotechnol. Bioeng., 75 (2001) 691–701.
- A. Stolz, Basic and applied aspects in the microbial degradation
of azo dyes, Appl. Microbiol. Biotechnol., 56 (2001) 69–80.
- F.P. 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.
- J. Rau, B. Maris, R. Kinget, C. Samyn, G. Van den Mooter,
A. Stolz, Enhanced anaerobic degradation of polymeric azo
compounds by Escherichia coli in the presence of low-molecularweight
redox mediators, J. Pharm. Pharmacol., 54 (2002)
1471–1479.
- J. Rau, H.J. Knackmuss, A. Stolz, Effects of different quinoid
redox mediators on the anaerobic reduction of azo dyes by
bacteria, Environ. Sci. Technol., 36 (2002) 1497–1504.
- Y.X. Qian, B. Yang, Z.J. Li, L.C. Lei, X.W. Zhang, Improving the
biodecolorization of reactive blue 13 by sodium anthraquinone-2-sulfonate immobilized on modified polyvinyl alcohol beads,
Chin. J. Chem. Eng., 23 (2015) 1194–1199.
- Y.X. Chen, H.L. Chen, Y.T. Xu, M.W. Shen, Irreversible sorption
of pentachlorophenol to sediments: experimental observations,
Environ. Int., 30 (2004) 31–37.
- H. Tong, M.J. Chen, F.B. Li, C.S. Liu, B. Li, J.I. Qiao,
Effects of humic acid on pentachlorophenol biodegrading
microorganisms elucidated by stable isotope probing and highthroughput
sequencing approaches: the effect of HA on PCP
degradation, Eur. J. Soil Sci., 69 (2018) 380–391.
- C.F. Zhang, A. Katayama, Humin as an electron mediator
for microbial reductive dehalogenation, Environ. Sci. Technol.,
46 (2012) 6575–6583.
- L. Bosso, G. Cristinzio, A comprehensive overview of bacteria
and fungi used for pentachlorophenol biodegradation, Rev.
Environ. Sci. Biotechnol., 13 (2014) 387–427.
- E. Lopez-Echartea, T. Macek, K. Demnerova, O. Uhlik, Bacterial
biotransformation of pentachlorophenol and micropollutants
formed during its production process, Int. J. Environ. Res.
Public Health, 13 (2016) 1146–1167.
- M.J. Chen, H. Tong, C.S. Liu, D.D. Chen, F.B. Li, J.T. Qiao,
A humic substance analogue AQDS stimulates Geobacter sp.
abundance and enhances pentachlorophenol transformation
in a paddy soil, Chemosphere, 160 (2016) 141–148.
- J. Lin, X.W. Zhang, Z.J. Li, L.C. Lei, Biodegradation of Reactive
blue 13 in a two-stage anaerobic-aerobic fluidized beds system
with a Pseudomonas sp. isolate, Bioresour. Technol., 101 (2009)
34–40.
- X.Y. Li, S.F. Yang, Influence of loosely bound extracellular
polymeric substances (EPS) on the flocculation, sedimentation
and dewaterability of activated sludge, Water Res., 41 (2007)
1022–1030.
- S. Singh, R. Chandra, D.K. Patel, V. Rai, Isolation and
characterization of novel Serratia marcescens (AY927692) for
pentachlorophenol degradation from pulp and paper mill
waste, World J. Microbiol. Biotechnol., 23 (2007) 1747–1754.
- A.R. Binupriya, M. Sathishkumar, D. Kavitha, K. Swaminathan,
Aerated and rotated mode decolorization of a textile dye
solution by native and modified mycelial biomass of Trametes
versicolor, J. Chem. Technol. Biotechnol., 82 (2007) 350–359.
- G.M. Walker, L.R. Weatherley, Biodegradation and biosorption
of acid anthraquinone dye, Environ. Pollut., 108 (2000) 219–223.
- H.C. Xu, H.L. Jiang, G.H. Yu, L.Y. Yang, Towards understanding
the role of extracellular polymeric substances in cyanobacterial
Microcystis aggregation and mucilaginous bloom formation,
Chemosphere, 117 (2014) 815–822.
- M. Kudlich, A. Keck, J. Klein, A. Stolz, Localization of the
enzyme system involved in anaerobic reduction of azo dyes
by Sphingomonas sp. strain BN6 and effect of artificial redox
mediators on the rate of azo dye reduction, Appl. Environ.
Microbiol., 63 (1997) 3691–3694.
- J.A. Field, J. Brady, Riboflavin as a redox mediator accelerating
the reduction of the azo dye mordant yellow 10 by anaerobic
granular sludge, Water Sci. Technol., 48 (2003) 187–193.
- S. Moosvi, H. Keharia, D. Madamwar, Decolorization of textile
dye Reactive Violet 5 by a newly isolated bacterial consortium
RVM, World J. Microbiol. Biotechnol., 21 (2005) 667–672.
- T.P. Thao, H.C. Kao, R.S. Juang, J.C.W. Lan, Kinetic characteristics
of biodegradation of methyl orange by Pseudomonas putida mt2
in suspended and immobilized cell systems, J. Taiwan Inst.
Chem. Eng., 44 (2013) 780–785.
- K.V. Radha, I. Regupathi, A. Arunagiri, T. Murugesan,
Decolorization studies of synthetic dyes using Phanerochaete
chrysosporium and their kinetics, Process Biochem., 40 (2005)
3337–3345.
- S.K. Karn, S.K. Chakrabarty, M.S. Reddy, Characterization of
pentachlorophenol degrading Bacillus strains from secondary
pulp-and-paper-industry sludge, Int. Biodeterior. Biodegrad.,
64 (2010) 609–613.
- X.W. Liu, R. He, D.S. Shen, Studies on the toxic effects of
pentachlorophenol on the biological activity of anaerobic
granular sludge, J. Environ. Manage., 88 (2008) 939–946.
- K.A. Mcallister, H. Lee, J.T. Trevors, Microbial degradation of
pentachlorophenol, Biodegradation, 7 (1996) 1–40.
- H.V. Hendriksen, S. Larsen, B.K. Ahring, Anaerobic degradation
of PCP and phenol in fixed film reactors: the influence of an
additional substrate, Water Sci. Technol., 24 (1991) 431–436.
- H. Tsuno, M. Kawamura, I. Somiya, Anaerobic degradation of
pentachlorophenol (PCP) in biological expanded-bed reactor,
Water Sci. Technol., 34 (1996) 335–344.
- S.J.B. Duff, K.J. Kennedy, A.J. Brady, Treatment of dilute phenol/PCP wastewaters using the upflow anaerobic sludge blanket
(UASB) reactor, Water Res., 29 (1995) 645–651.
- M.H.R.Z. Damianovic, E.M. Moraes, M. Zaiat, E. Foresti,
Pentachlorophenol (PCP) dechlorination in horizontal-flow
anaerobic immobilized biomass (HAIB) reactors, Bioresour.
Technol., 100 (2009) 4361–4367.
- A.B. Dos Santos, I.A.E. Bisschops, F.J. Cervantes, J.B. Van Lier,
Effect of different redox mediators during thermophilic azo dye
reduction by anaerobic granular sludge and comparative study
between mesophilic (30°C) and thermophilic (55°C) treatments
for decolourisation of textile wastewaters, Chemosphere,
55 (2004) 1149–1157.
- J. Lian, J.B. Guo, G. Feng, G.F. Liu, J.L. Yang, C. Liu, Z.X. Li,
L. Yue, L.J. Zhao, Development of bioreactor systems with
functional bio-carrier modified by disperse turquoise blue S-GL
for disperse scarlet S-BWFL decolorization, Bioresour. Technol.,
102 (2001) 11239–11243.
- Y.X. Qian, K.F. Zhang, H.X. Jin, L.C. Lei, H.H. Gan,
H.N. Zhang. The removal of methyl violet from dye wastewater
by Pseudomonas sp.: the effect of extra- and intra-cellular
substances, Desal. Water Treat., 132 (2018):329–339.