References

  1. 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.
  2. 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.
  3. D. Chen, Z. Liao, Experimental study on cleaning of metal surface attachment by electrochemical method, Surf. Technol., 36 (2007) 16–17.
  4. 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.
  5. 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.
  6. 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.
  7. M. Foroozanfar, Environmental control in petroleum operations, J. CleanWAS, 1 (2017) 18–22.
  8. Z.L. Liu, China’s strategy for the development of renewable energies, Energy Sources Part B, 12 (2017) 971–975.
  9. M. Li, C.P. Feng, Z.Y. Zhang, N. Sugiura, Efficient electrochemical reduction of nitrate to nitrogen using Ti/IrO2Pt anode and different cathodes, Electrochim. Acta, 54 (2009) 4600–4606.
  10. T.W. Swaddle, P. Oltmann, Kinetics of magnetite-maghemitehematite transformation, with special reference to hydrothermal systems, Can. J. Chem., 58 (1980) 1763–1772.
  11. 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.
  12. G.H. Chen, Electrochemical technologies in wastewater treatment, Sep. Purif. Technol., 38 (2004) 11–41.
  13. 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.
  14. 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.
  15. 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.
  16. 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.
  17. 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.
  18. 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.
  19. 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.
  20. 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.
  21. 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.
  22. 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.
  23. 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.
  24. 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.