References
- M. Balasubramanian, C.A. Melendres, An X-ray absorption
near-edge spectroscopy study of the oxidation state of
chromium in electrodeposited oxide films, Electrochim. Acta,
44 (1999) 2941–2945.
- D.W. Blowes, C.J. Ptacek, J.L. Jambor, In-situ remediation of
Cr(VI)-contaminated groundwater using permeable reactive
walls: laboratory studies, Environ. Sci. Technol., 31 (1997)
3348–3357.
- D. Chen, Z. Liao, Experimental study on cleaning of metal
surface attachment by electrochemical method, Surf. Technol.,
36 (2007) 16–17.
- N. Hashemi, Recognizing the potential of sustainable use of
pasture resources in south Khorasan province with approach of
carrying capacity, Environ. Ecosyst. Sci., 1 (2017) 9–12.
- W.C. He, H.B. Shao, Q.Q. Chen, J. Wang, J. Zhang, Polarization
characteristic of iron anode in concentrated NaOH solution,
Acta Phys. Chim. Sin., 23 (2007) 1525–1530.
- L. Chen, X. Deng, Z. Liao, Study on the mechanism and
laboratory of a new metal surface cleaning method, Surf.
Technol., 4 (2008) 114–115.
- M. Foroozanfar, Environmental control in petroleum operations,
J. CleanWAS, 1 (2017) 18–22.
- Z.L. Liu, China’s strategy for the development of renewable
energies, Energy Sources Part B, 12 (2017) 971–975.
- M. Li, C.P. Feng, Z.Y. Zhang, N. Sugiura, Efficient
electrochemical reduction of nitrate to nitrogen using Ti/IrO2–Pt anode and different cathodes, Electrochim. Acta, 54 (2009)
4600–4606.
- T.W. Swaddle, P. Oltmann, Kinetics of magnetite-maghemitehematite
transformation, with special reference to hydrothermal
systems, Can. J. Chem., 58 (1980) 1763–1772.
- R.T. Wilkin, C.M. Su, R.G. Ford, C.J. Paul, Chromium-removal
processes during groundwater remediation by a zerovalent
iron permeable reactive barrier, Environ. Sci. Technol., 39 (2005)
4599–4605.
- G.H. Chen, Electrochemical technologies in wastewater
treatment, Sep. Purif. Technol., 38 (2004) 11–41.
- P.D. Mackenzie, D.P. Horney, T.M. Sivavec, Mineral precipitation
and porosity losses in granular iron columns, J. Hazard.
Mater., 68 (1999) 1–17.
- N. Melitas, O. Chuffe-Moscoso, J. Farrell, Kinetics of soluble
chromium removal from contaminated water by zerovalent
iron media: corrosion inhibition and passive oxide effects,
Environ. Sci. Technol., 35 (2001) 3948–3953.
- Z.B. Niu, Y. Wang, X.J. Zhang, W.J. He, H.D. Han, P.J. Yin, Study
on influencing factors of iron release in water supply network,
Environ. Sci., 28 (2007) 2270–2274.
- S.M. Ponder, J.G. Darab, J. Bucher, Surface chemistry and
electrochemistry of supported zerovalent iron nanoparticles in
the remediation of aqueous metal contaminants, Chem. Mater.,
13 (2001) 479–486.
- J.H. Qu, X. Zhao, Design of BDD-TiO2 hybrid electrode with
P–N function for photoelectrocatalytic degradation of organic
contaminants, Environ. Sci. Technol., 42 (2008) 4934–4939.
- A. Radan, M. Latifi, M. Moshtaghie, M. Omidi, Determining
the sensitive conservative site in Kolah Ghazi National Park,
Iran, in order to management wildlife by using GIS software,
Environ. Ecosyst. Sci., 1 (2017) 13–15.
- R. Radmanfar, M. Rezayi, S. Salajegheh, V.A. Bafrani,
Determination the most important of hse climate assessment
indicators case study: HSE climate assessment of combined
cycle power plant staffs, J. CleanWAS., 1 (2017) 23–26.
- M.I. Sarkar, M.N. Islam, A. Jahan, A. Islam, J.C. Biswas, Rice
straw as a source of potassium for wetland rice cultivation,
Geol. Ecol. Landscapes, 1 (2017) 184–189.
- H. Xiao, M. Wang, S. Sheng, Spatial evolution of URNCL and
response of ecological security: a case study on Foshan City,
Geol. Ecol. Landscapes, 1 (2017) 190–196.
- H. Fu, X. Liu, Research on the phenomenon of Chinese
residents’ spiritual contagion for the reuse of recycled water
based on SC-IAT, Water, 9 (2017) 846.
- G.H. Zhao, Y.G. Zhang, Y.Z. Lei, B.Y. Lv, J.X. Gao, Y.N. Zhang,
D.M. Li, Fabrication and electrochemical treatment application
of a novel lead dioxide anode with superhydrophohic surfaces,
high oxygen evolution potential, and oxidation capability,
Environ. Sci. Technol., 44 (2010) 1754–1759.
- K.C.K. Lai, I.M.C. Lo, Removal of chromium (VI) by acid-washed
zero-valent iron under various groundwater geochemistry
conditions, Environ. Sci. Technol., 42 (2008) 1238–1244.