References
- X. Huang, Y. Liu, S. Liu, X. Tan, Y. Ding, G. Zeng, Y. Zhou,
S. Wang, M. Zhang, B. Zheng, Effective removal of Cr(VI) using
β-cyclodextrin-chitosan modified biochars with adsorption/
reduction bifunctional roles, RSC Adv., 6 (2015) 94–104.
- H.H. Lyu, J.C. Tang, Y. Huang, L.S. Gai, E.Y. Zeng, K. Liber,
Y.Y. Gong, Removal of hexavalent chromium from aqueous
solutions by a novel biochar supported nanoscale iron sulfide
composite, Chem. Eng. J., 322 (2017) 516–524.
- Z.B. Zhang, H.F. Duan, S.H. Li, Y.J. Lin, Assembly of magnetic
nanospheres into one-dimensional nanostructured carbon
hybrid materials, Langmuir, 26 (2010) 6676–6680.
- X. Tian, K. Patel, J.R. Ridpath, J.A. Swenberg, J. Nakamura,
Genotoxicity of trace level of hexavalent chromium existing in
city water, Cancer Res., 74 (2014) 5363–5364.
- S.A. Katz, H. Salem, The toxicology of chromium with respect
to its chemical speciation: a review, J. Appl. Toxicol., 13 (1993)
217–224.
- H.S. Chang, J.H. Singer, J.C. Seaman, In-situ chromium
(VI) reduction using iron (II) solutions: modeling dynamic
geochemical gradients, Vadose Zone J., 11 (2012) 1043–1053.
- M. Pettine, D. Tonnina, F.J. Millero, Chromium (VI) reduction
by sulfur (IV) in aqueous solutions, Mar. Chem., 99 (2006)
31–41.
- C. Kantar, C. Ari, S. Keskin, Z.G. Dogaroglu, A. Karadeniz,
A. Alten, Cr (VI) removal from aqueous systems using pyrite
as the reducing agent: batch, spectroscopic and column
experiments, J. Contam. Hydrol., 174 (2015) 28–38.
- Q. Liu, M.J. Xu, F. Li, T. Wu, Y.J. Li, Rapid and effective removal
of Cr(VI) from aqueous solutions using the FeCl3/NaBH4
system, Chem. Eng. J., 296 (2016) 340–348.
- D.L. Zhao, X. Gao, C.N. Wu, R. Xie, S.J. Feng, C.L. Chen, Facile
preparation of amino-functionalized graphene oxide decorated
with Fe3O4 nanoparticles for the adsorption of Cr(VI), Appl.
Surf. Sci., 384 (2016) 1–9.
- X. Xin, Q. Wei, J. Yang, L. Yan, R. Feng, G. Chen, B. Du,
H. Li, Highly efficient removal of heavy metal ions by aminefunctionalized
mesoporous Fe3O4 nanoparticles, Chem. Eng. J.,
184 (2012) 132–140.
- L. Ren, H.X. Lin, F.C. Meng, F. Zhang, One-step solvothermal
synthesis of Fe3O4@carbon composites and their application
in removing of Cr(VI) and Congo red, Ceram. Int., 45 (2019)
9646–9652.
- Y.B. Feng, Y. Du, Z.T. Chen, M.X. Du, K. Yang, X.J. Lv, Z.F. Li,
Synthesis of Fe3O4 nanoparticles with tunable sizes for the
removal of Cr(VI) from aqueous solution, J. Coat. Technol. Res.,
15 (2018) 1145–1155.
- Y.Y. Li, J.L. Liang, Z.H. Yang, H. Wang, Y.S. Liu, Reduction
and immobilization of hexavalent chromium in chromite ore
processing residue using amorphous FeS2, Sci. Total Environ.,
658 (2019) 315–323.
- Y.Y. Li, J.L. Liang, X. He, L. Zhang, Y.S. Liu, Kinetics and
mechanisms of amorphous FeS2 induced Cr(VI) reduction,
J. Hazard. Mater., 320 (2016) 216–225.
- E.A. Kaprara, A.I. Zouboulis, K.T. Simeonidis, M.G. Mitrakas,
Potential application of inorganic sulfur reductants for Cr(VI)
removal at sub-ppb level, Desal. Water Treat., 54 (2015)
2067–2074.
- Y.Y. Li, A.B. Cundy, J.X. Feng, H. Fu, X.J. Wang, Y.S. Liu,
Remediation of hexavalent chromium contamination in
chromite ore processing residue by sodium dithionite and
sodium phosphate addition and its mechanism, J. Environ.
Manage., 192 (2017) 100–106.
- G.B. Chen, Z.F. Zhu, Y. Qin, Synthesis of pure micro- and
nanopyrite and their application for As(III) removal from
aqueous solution, Adv. Mater. Sci. Eng., 2016 (2016) 6290420.
- W. Liu, L.D. Jin, J. Xu, J. Liu, Y.Y. Li, P.P. Zhou, C.C. Wang,
R.A. Dahlgren, X.D. Wang, Insight into pH-dependent Cr(VI)
removal with magnetic Fe3S4, Chem. Eng. J., 359 (2019) 564–571.