References
- A. Mohmmed, Z.H. Li, A.O. Arowolo, H.B. Su, X.Z. Deng,
O. Najmuddin, Y. Zhang, Driving factors of CO2 emissions and
nexus with economic growth, development and human health
in the Top Ten emitting countries, Resour. Conserv. Recycl.,
148 (2019) 157–169.
- J.-N. Wu, L. Cheng, Y.-T. Lu, L.-L. Song, Life cycle inventory
analysis of clean alternatives to scattered coal heating, China
Environ. Sci., 38 (2018) 1570–1578.
- C.H. Li, K. Wang, W. Zheng, Z.X. Wang, J. Liu, X.Z. You, Broadspectrum
solar cell, Prog. Chem.-Beijing, 24 (2012) 8–16.
- C.L. Wang, C. Xu, G. Xu, P. Bai, Studies on replacing coal with
natural gas and heat pump for heating in Beijing–Tianjin–Hebei
region, China Environ. Sci., 37 (2017) 4363–4370.
- Z. Wang, Y. Li, H. Sun, W. Cao, Test and research on the fouling
in condenser and evaporator of direct sewage source heat
pump system, J. Xi’an Univ. Archit. Technol., 46 (2014) 567–571.
- L. Lai, C. Hu, Heterogeneous Fenton catalytic water treatment
technology and mechanism, Prog. Chem., 29 (2017) 981–999.
- Y. Wu, Y.W. Sun, D. Wang, J. Zhang, P.R. He, Y.P. Li, Z.G. Zhang,
H.B. Cao. Enhanced treatment of petrochemical reverse osmosis
concentrate by an electro-Fenton process with dosing
H2O2 and aeration, Chem. Ind. Eng. Prog., 36 (2017) 3523–3530.
- Z.C. Ma, J.S. Li, S.T. Xing, Facile cyclohexane-mediated hydrothermal
synthesis of modified δ-MnO2 with enhanced Fenton-like
catalytic activity, Chem. J. Chin. Univ., 38 (2017) 636–641.
- W. Zhang, Y.Y. Ji, H. Peng, S.Y. Dai, Y. Liu, J.M. Zhang,
D.M. Wang, High efficiency synthesis of FeY type zeolite and
its heterogeneous Fenton catalytic degradation, Chem. J. Chin.
Univ., 39 (2018) 1985–1992.
- J.-M. Lee, J.-H. Kim, Y.-Y. Chang, Y.-S. Chang, Steel dust
catalysis for Fenton-like oxidation of polychlorinated dibenzop-
dioxins, J. Hazard. Mater., 163 (2009) 222–230.
- N. Panda, H. Sahoo, S. Mohapatra, Decolourization of Methyl
Orange using Fenton-like mesoporous Fe2O3–SiO2 composite,
J. Hazard. Mater., 185 (2011) 359–365.
- L. Wang, Y.Y. Yao, L.J. Sun, W.Y. Lü, W.X. Chen, Activation of
hydrogen peroxide by activated carbon fibers coupled with
Fe(III)-citrate for degradation of dyes at neutral pH, Acta
Chimica Sinica, 71 (2013) 1633–1638.
- P. Zeng, S.-Y. Liu, J.-K. Zhang, Y.-H. Song, Advanced Fenton
oxidation treatment of tetracycline resistance genes in effluent
discharged from biological wastewater treatment, China
Environ. Sci., 37 (2017) 3315–3323.
- S.T. Jiang, J.Z. Zhu, Y.J. Guan, S.L. Bai, J. Yao, T.F. Tang,
Performance of heterogeneous Fenton-like system for
degradation of nitrobenzene-containing wastewater, CIESC J.,
65 (2014) 1488–1494.
- M.F. Yin, S. Li, C.P. Wang, H.W. Sun, A novel technology
for enhanced remediation of soils contaminated by PBDEs,
China Environ. Sci., 37 (2017) 3853–3860.
- Y. Xing, Z.Q. Wang, C. Hong, M. Liu, Y. Si, Technological
optimization of sludge conditioned by Fenton’s reagent combined
with surfactant, China Environ. Sci., 35 (2015) 1164–1172.
- C.Z. Fan, C.T. Li, P. Lu, X. Zhang, W.W. Zhao, S.S. Tao,
Experimental research of purification NO-containing gas by
aqueous oxidation with Fenton-like agent, China Environ.
Sci., 32 (2012) 988–993.
- J.H. Deng, J.Y. Jiang, Y.Y. Zhang, X.P. Lin, C.M. Du, Y. Xiong,
FeVO4 as a highly active heterogeneous Fenton-like catalyst
towards the degradation of Orange II, Appl. Catal., B,
84 (2008) 468–473.
- J.S. Fang, G.R. Yu, X.C. Chen, Y. Wang, C. Deng, The influence
factors on the Fenton catalytic degradation of phenol using
iron-loaded graphene modified molecular sieve catalyst,
Acta Sci. Circumstantiae, 35 (2015) 3529–3537.
- W.L. Wang, Y.F. Wang, S.Y. Lu, T.T. Ju, L.L. Zhang, X.H. Liu,
Characteristic studies on treatment of high concentration
rhodamine B with US/UV-Fenton system, China Environ.
Sci., 36 (2016) 2329–2336.
- J.E.F. Moraes, F.H. Quina, C.A.O. Nascimento, D.N. Silva,
O. Chiavone-Filho, Treatment of saline wastewater contaminated
with hydrocarbons by the photo-Fenton process,
Environ. Sci. Technol., 38 (2004) 1183–1187.
- J.F. Perez-Benito, Iron(III)-hydrogen peroxide reaction: kinetic
evidence of a hydroxyl-mediated chain mechanism, J. Phys.
Chem. A, 108 (2004) 4853–4858.
- J. Cun, S.L. Tian, Q. Wang, J. Zeng, Photo-assisted degradation
of rhodamine B by Ferrocene-catalyzed heterogeneous
Fenton-like reaction, China Environ. Sci., 33 (2013) 1011–1016.
- M. Xia, M.C. Long, Y.D. Yang, C. Chen, W.M. Cai,
B.X. Zhou, A highly active bimetallic oxides catalyst supported
on Al-containing MCM-41 for Fenton oxidation of phenol
solution, Appl. Catal. B, 110 (2011) 118–125.
- K.-i, Ishibashi, A. Fujishima, T. Watanabe, K. Hashimoto,
Detection of active oxidative species in TiO2 photocatalysis
using the fluorescence technique, Electrochem. Commun.,
2 (2000) 207–210.
- K. Fan, F.Q. Cheng, Degradation of phenol by three-dimensional
electrode/electro-Fenton system, Chin. J. Environ. Eng., 6 (2012)
451–454.
- P. Marcio, O. Nihal, D. Marcia, M.A. Oturan, Phenol
degradation by advanced electrochemical oxidation process
electro-Fenton using a carbon felt cathode, Appl. Catal. B,
83 (2008) 140–149.
- A. Nezamzadeh-Ejhieh, S. Hushmandrad, Solar photodecolorization
of methylene blue by CuO/X zeolite as a
heterogeneous catalyst, Appl. Catal., A, 388 (2010) 149–159.
- H. Lin, H. Zhang, X. Wang, L.G. Wang, J. Wu, Electro-Fenton
removal of Orange II in a divided cell: reaction mechanism,
degradation pathway and toxicity evolution, Sep. Purif.
Technol., 122 (2014) 533–540.