References
- Z. Feng, H. Chen, H. Li, R. Yuan, F. Wang, Z. Chen, B. Zhou,
Preparation, characterization, and application of magnetic
activated carbon for treatment of biologically treated
papermaking wastewater, Sci. Total Environ., 713 (2020)
136423.
- G. Vilardi, J.M. Ochando-Pulido, M. Stoller, N. Verdone,
L. Di Palma, Fenton oxidation and chromium recovery from
tannery wastewater by means of iron-based coated biomass as
heterogeneous catalyst in fixed-bed columns, Chem. Eng. J.,
351 (2018) 1–11.
- G. Vilardi, J. Rodríguez-Rodríguez, J.M. Ochando-Pulido,
N. Verdone, A. Martinez-Ferez, L. Di Palma, Large laboratoryplant
application for the treatment of a Tannery wastewater
by Fenton oxidation: Fe(II) and nZVI catalysts comparison
and kinetic modelling, Process Saf. Environ. Prot., 117 (2018)
629–638.
- G. Li, J. Yu, Y. Zhang, L. Gao, B. He, Study on treatment of
wastewater from papermaking using Fenton oxidation, Adv.
Mater. Res., 726–731 (2013) 1760–1763.
- L. Zhang, M. Wu, Y. Han, M. Liu, J. Niu, Structural parameter
optimization for novel internal-loop iron–carbon microelectrolysis
reactors using computational fluid dynamics, Chin.
J. Chem. Eng., 27 (2019) 737–744.
- M. Kamali, Z. Khodaparast, Review on recent developments
on pulp and paper mill wastewater treatment, Ecotoxicol.
Environ. Saf., 114 (2015) 326–342.
- D.S. Babu, V. Srivastava, P.V. Nidheesh, M.S. Kumar,
Detoxification of water and wastewater by advanced oxidation
processes, Sci. Total Environ., 696 (2019) 133961.
- B. Jiang, J. Zheng, X. Lu, Q. Liu, M. Wu, Z. Yan, S. Qiu,
Q. Xue, Z. Wei, H. Xiao, M. Liu, Degradation of organic dye
by pulsed discharge non-thermal plasma technology assisted
with modified activated carbon fibers, Chem. Eng. J., 215–216
(2013) 969–978.
- Y.Z. Lin, M.Y. Liu, X.H. Liu, G.D. Wang, Pre-treatment of tinplating
wastewater from cold strip mill with H2O2-ferric/carbon, Iron Steel, 42 (2007) 79–81.
- Y. Chen, T. Lin, W. Chen, Enhanced removal of organic matter
and typical disinfection byproduct precursors in combined
iron–carbon micro electrolysis-UBAF process for drinking
water pre-treatment, J. Environ. Sci., 78 (2019) 315–327.
- B. Yang, Y. Gao, D. Yan, H. Xu, J. Wang, Degradation
characteristics of color Index direct blue 15 dye using ironcarbon
micro-electrolysis coupled with H₂O₂, Int. J. Environ.
Res. Public Health, 15 (2018) 15–23.
- K. Chanworrawoot, M. Hunsom, Treatment of wastewater from
pulp and paper mill industry by electrochemical methods in
membrane reactor, J. Environ. Manage., 113 (2012) 399–406.
- C. Ma, Z. Ran, Z. Yang, L. Wang, C. Wen, B. Zhao, H. Zhang,
Efficient pretreatment of industrial estate wastewater for
biodegradability enhancement using a micro-electrolysiscirculatory
system, J. Environ. Manage., 250 (2019) 109492.
- Z. Yi, J. Xu, M. Chen, W. Li, J. Yao, H. Chen, F. Wang, Removal
of uranium(VI) from aqueous solution using sponge iron,
J. Radioanal. Nucl. Chem., 298 (2013) 955–961.
- C. Sun, L.I. Shao-Feng, C. Williams, H.C. Tao, Spectrophotometric
determination of hydrogen peroxide in O3/H2O2 advanced
oxidation system with titanium oxalate, Chem. Eng. Process.,
25 (2011) 27–31.
- S. Xia, R. Lin, X. Cui, J. Shan, The application of orthogonal
test method in the parameters optimization of PEMFC under
steady working condition, Int. J. Hydrogen Energy, 41 (2016)
11380–11390.
- R. Lin, X. Diao, T. Ma, S. Tang, L. Chen, D. Liu, Optimized
microporous layer for improving polymer exchange membrane
fuel cell performance using orthogonal test design, Appl.
Energy, 254 (2019) 113714.
- F. Han, X. Ye, Q. Chen, H. Long, Y. Rao, The oxidative degradation
of diclofenac using the activation of peroxymonosulfate by
BiFeO3 microspheres—kinetics, role of visible light and decay
pathways, Sep. Purif. Technol., 232 (2020) 115967.
- X. Liu, J. Liu, J. Bi, F. Cao, Y. Ding, J. Peng, Effects of high
pressure homogenization on physical stability and carotenoid
degradation kinetics of carrot beverage during storage, J. Food
Eng., 263 (2019) 63–69.
- M. Li, D. Zou, H. Zou, D. Fan, Degradation of nitrobenzene
in simulated wastewater by iron–carbon micro-electrolysis
packing, Environ. Technol., 33 (2011) 1761–1766.
- Y. Wang, Y. Liu, W. Fu, L. Chen, Y. Li, S. Wu, Treatment of
actual dyeing wastewater by continuous iron-carbon microelectrolysis
process, Adv. Mater. Res., 838–841 (2013) 2395–2399.
- S. Lan, X. Wu, Y. Wang, Treatment of mid-stage pulping effluent
using the combined process of microelectrolysis and Fenton
oxidation-coagulation, Appl. Mech. Mater., 295–298 (2013)
2001–2010.
- H. Zhuang, S. Shan, C. Fang, Y. Song, X. Xue, Advanced
treatment of paper mill wastewater using electro-fenton process
with novel catalytic particle electrodes, BioResources, 13 (2018)
4175–4186.
- X. Zheng, M. Jin, X. Zhou, W. Chen, D. Lu, Y. Zhang, X. Shao,
Enhanced removal mechanism of iron carbon micro-electrolysis
constructed wetland on C, N, and P in salty permitted effluent
of wastewater treatment plant, Sci. Total Environ., 649 (2019)
21–30.
- M. Panizza, G. Cerisola, Removal of organic pollutants from
industrial wastewater by electrogenerated Fenton’s reagent,
Water Res., 35 (2001) 3987–3992.
- S. Giray, M. Morcali, S. Akarsu, C. Zıba, M. Dolaz, Comparison
of classic Fenton with ultrasound Fenton processes on
industrial textile wastewater, Sustainable Environ. Res.,
28 (2018) 165–170.
- X. Wang, X. Gong, Q. Zhang, H. Du, Degradation mechanism
of Direct Pink 12B treated by iron-carbon micro-electrolysis and
Fenton reaction, J. Environ. Sci., 25 (2013) S63–S68.
- C. Huang, F. Peng, H.-J. Guo, C. Wang, M.-T. Luo, C. Zhao,
L. Xiong, X.-F. Chen, X.-D. Chen, Efficient COD degradation
of turpentine processing wastewater by combination of Fe–C
micro-electrolysis and Fenton treatment: long-term study and
scale up, Chem. Eng. J., 351 (2018) 697–707.
- J. Zhao, S. Ye, Y.-y. Wang, X.-y. You, L.-y. Chai, Y.-d. Shu,
Electrochemical degradation of acidified reed pulp black liquor
with three-dimensional electrode reactor, J. Cent. South Univ.,
22 (2015) 2945–2953.
- D. Pokhrel, T. Viraraghavan, Treatment of pulp and paper mill
wastewater—a review, Sci. Total Environ., 333 (2004) 37–58.
- M. Malakootian, K. Kannan, M.A. Gharaghani, A. Dehdarirad,
A. Nasiri, Y.D. Shahamat, H. Mahdizadeh, Removal of
metronidazole from wastewater by Fe/charcoal micro
electrolysis fluidized bed reactor, J. Environ. Chem. Eng.,
7 (2019) 103457.
- L. Wang, Q. Yang, D. Wang, X. Li, G. Zeng, Z. Li, Y. Deng, J. Liu,
K. Yi, Advanced landfill leachate treatment using iron-carbon
microelectrolysis-Fenton process: process optimization and
column experiments, J. Hazard. Mater., 318 (2016) 460–467.
- C. Zhang, M. Zhou, G. Ren, X. Yu, L. Ma, J. Yang, F. Yu,
Heterogeneous electro-Fenton using modified iron–carbon as
catalyst for 2,4-dichlorophenol degradation: influence factors,
mechanism and degradation pathway, Water Res., 70 (2015)
414–424.
- H. He, D. Wu, Advanced oxidation treatment of papermaking
wastewater by homogeneous Fenton reaction, Adv. Mater. Res.,
726–731 (2013) 2510–2514.
- M.N. Morshed, N. Bouazizi, N. Behary, J. Guan, V. Nierstrasz,
Stabilization of zero valent iron (Fe0) on plasma/dendrimer
functionalized polyester fabrics for Fenton-like removal of
hazardous water pollutants, Chem. Eng. J., 374 (2019) 658–673.
- X. Xu, Y. Cheng, T. Zhang, F. Ji, X. Xu, Treatment of
pharmaceutical wastewater using interior micro-electrolysis/Fenton oxidation–coagulation and biological degradation,
Chemosphere, 152 (2016) 23–30.