References
- A. Azapagic, Developing a framework for sustainable development
indicators for the mining and minerals industry, J. Clean.
Prod., 6 (2004) 639–662.
- A. Akcil, S. Koldas, Acid Mine Drainage (AMD): causes, treatment
and case studies, J. Clean. Prod., 14 (2006) 1139–1145.
- A. Peppas, K. Komnitsas, I. Halikia, Use of organic covers for
acid mine drainage control, Min. Eng., 13 (2000) 563–574.
- R. Lauwerys, V. Haufroid, P. Hoet, D. Lison, Toxicologieindustrielle
et intoxications professionnelles, 5th ed., Elsevier-Masson,
Paris., 2007.
- R.A. Gil, S. Cerutti, J.A. Gasquez, R.A. Olsina, Preconcentration
and speciation of chromium in drinking water samples
by coupling of online sorption on activated carbon to ETAAS
determination, Talanta, 68 (2006) 1065–1070.
- S. Durairaj, Biosorption of hexavalent chromium in a tannery
industry waste water using fungi species, Glob. J. Environ. Sci.
Manag., 2 (2016) 105–124.
- M. Kobya, Adsorption, kinetic and equilibrium studies of
Cr(VI) by hazelnut shell activated carbon, Adsorp. Sci. Technol.,
22 (2004) 51–64.
- X.Q. Li, J.S. Cao, W.X. Zhang, Stoichiometry of Cr(VI) immobilization
using nanoscale zerovalent iron (nZVI): a study with
high-resolution X-ray photoelectron spectroscopy (HR-XPS),
Ind. Eng. Chem. Res., 47 (2008) 2131–2139.
- Q.W. Liang, J.J. Geng, H.J. Luo,W. Fang, Fast and selective
removal of Cr(VI) from aqueous solutions by a novel magnetic
Cr(VI) ion-imprinted polymerin, J. Mol. Liq., 248 (2017) 767–774.
- D. Petruzzelli, R. Passino, G. Tiravanti, Ion exchange process
for chromium removal and recovery from tannery wastes, Ind.
Eng. Chem. Res., 34 (1995) 2612–2617.
- C.A. Kozlowski, W. Walkowiak, Removal of chromium (VI)
from aqueous solutions by polymer inclusion membranes,
Water Res., 36 (2002) 4870–4876.
- F. Akbal, S. Camc, Copper, chromium and nickel removal from
metal plating wastewater by electrocoagulation, Desalination,
269 (2011) 214–222.
- A. Assadi, M.H. Dehghani, N. Rastkari, S. Nasseri, A.H. Mahvi,
Photocatalytic reduction of hexavalent chromium in aqueous
solution with zinc oxide nanoparticles and hydrogen peroxide,
Environ. Prot. Eng., 38 (2012) 5–16.
- T. Mohammadi, A. Moheb, M. Sadrzadeh, A. Razmi, Modeling
of metal ion removal from wastewater by electrodialysis, Sep.
Purif. Technol., 41 (2005) 73–82.
- S.A. Chaudhry, T.A. Khan, I. Ali, Equilibrium, kinetic and
thermodynamic studies of Cr(VI) adsorption from aqueous
solution onto manganese oxide coated sand grain (MOCSG),
J. Mol. Liq., 236 (2017) 320–330.
- V.K. Gupta, D. Pathania, S. Sharma, S. Agarwal, P. Singh,
Remediation of noxious chromium (VI) utilizing acrylic
acid grafted lignocellulosic adsorbent, J. Mol. Liq., 177 (2013)
343–352.
- Y.H. Wu, H.W. Pang, Y. Liu, X.X. Wang, Environmental remediation
of heavy metal ions by novel-nanomaterials: A review,
Environ. Pollut., 246 (2019) 608–620.
- Q.L. Fang, J.F. Zhang, L.F. Bai, J.Y. Duan, H.J. Xu, K.C.F. Leung,
S.H. Xuan, In situ redox-oxidation polymerization for magnetic
core-shell nanostructure with polydopamine-encapsulated-Au hybrid shell, J. Hazard. Mater., 367 (2019) 15–25.
- X. Liu, J. Sun, X.T. Xu, A. Alsaedi, T. Hayat, Adsorption and
desorption of U(VI) on different-size graphene oxide, Chem.
Eng. J., 360 (2019) 941–950.
- X. Liu, J. Sun, X.T. Xu, G.D. Sheng, Y.B. Sun, Y.S. Huang, A.
Alsaedi, T. Hayat, J.X. Li, Is the interaction between graphene
oxide and minerals reversible? Environ. Pollut., 249 (2019) 785–793.
- Q. Huang, S. Song, Z. Chen, B.W. Hu, J.R. Chen, X.K. Wang,
Biochar-based materials and their applications in removal
of organic contaminants from wastewater: state-of-the-art
review, Biochar, (2019) https://doi.org/10.1007/s42773-019-00006-5.
- J. Lehmann, A handful of carbon, Nature, 447 (2007) 143–144.
- C.L. Schelske, Eutrophication: focus on phosphorus, Science,
324 (2009) 722.
- D.J. Conley, H.W. Paerl, R.W. Howarth, D.F. Boesch, S.P.
Seitzinger, K.E. Havens, C. Lancelot, G.E. Likens, Controlling
eutrophication: nitrogen and phosphorus, Science, 323 (2009)
1014–1015.
- L. Beesley, E. Moreno-Jimenez, J.L. Gomez-Eyles, E. Harris, B.
Robinson, T. Sizmur, A review of biochars’ potential role in
the remediation, revegetation and restoration of contaminated
soils, Environ. Pollut., 159 (2011) 3269–3282.
- J. Lehmann, J. Gaunt, M. Rondon, Bio-char sequestration in
terrestrial ecosystems – a review, Mitig. Adapt. Strat. GL.,
(2006) 403–427.
- S.P. Sohi, E. Krull, E. Lopez-Capel, R. Bol, A review of biochar
and its use and function in soil, Adv. Agron., 105 (2010) 47–82.
- M. Zhang, B. Gao, S. Varnoosfaderani, A.F. Hebard, Y. Yao, M.
Inyang, Preparation and characterization of a novel magnetic
biochar for arsenic removal, Bioresource Technol., 130 (2013)
457–462.
- A.U. Rajapaksha, M. Vithanage, M. Zhang, M. Ahmad, D.
Mohan, Pyrolysis condition affected sulfamethazine sorption
by tea waste biochars, Bioresource Technol., 166 (2014) 303–308.
- M. Zhang, B. Gao, Y. Yao, Y.W. Xue, M. Inyang, Synthesis, characterization,
and environmental implications of graphenecoated
biochar, Sci. Total Environ., 435 (2012) 567–572.
- L.B. Qian, W.Y. Zhang, J.C. Yan, L. Han, Y. Chen, D. Ouyang,
M.F. Chen, Nanoscale zero-valent iron supported by biochars
produced at different temperatures: Synthesis mechanism and
effect on Cr(VI), Removal. Environ. Pollut., 223 (2017) 153–160.
- M. Zhang, B. Gao, Y. Yao, Y.W. Xue, Synthesis of porous MgO–biochar nanocomposites for removal of phosphate and nitrate
from aqueous solutions, Chem. Eng. J., 210 (2012) 26–32.
- Y. Xie, C.L. Chen, X.M. Rena, X.X. Wang, H.Y. Wang, X.K. Wang,
Emerging natural and tailored materials for uranium-contaminated
water treatment and environmental remediation, Prog.
Mater. Sci., 103 (2019) 180–234.
- D. Ghosh, K.G. Bhattacharyya, Adsorption of methylene blue
on kaolinite, Appl. Clay Sci., 20 (2002) 295–300.
- A. Kaya, Characterization of clay particle surfaces for contaminant
sorption in soil barriers using flow microcalorimetry, J.
Environ. Eng., 130 (2004) 918–921.
- J. Zhuang, G.R. Yu, Effects of surface coatings on electrochemical
properties and contaminant sorption of clay minerals, Chemosphere,
49 (2002) 619–628.
- M. Segad, B. Jonsson, T. Akesson, B. Cabane, Ca/Na montmorillonite:
structure, forces and swelling properties, Langmuir,
26 (2010) 5782–5790.
- A. Gurses, C. Dogar, M. Yalcin, M. Acikyildiz, R. Bayrak, S.
Karaca, The adsorption kinetics of the cationic dye, methylene
blue, onto clay, J. Hazard. Mater., 131 (2006) 217–228.
- H.H. Murray, Overview, clay mineral applications, Appl. Clay
Sci., 5 (1991) 379–395.
- C. Bilgic, Investigation of the factors affecting organic cation
adsorption on some silicate minerals, J. Colloid Interf. Sci., 281
(2005) 33–38.
- S. Liu, W.H. Xu, Y.G. Liu, X.F. Tan, G.M. Zeng, X. Li, J. Liang, Z.
Zhou, Z.L. Yan, X.X. Cai, Facile synthesis of Cu(II) impregnated
biochar with enhanced adsorption activity for the removal of
doxycycline hydrochloride from water, Sci. Total Environ., 592
(2017) 546–553.
- J.D. Yu, C.Y. Jiang, Q.Q. Guan, P. Ning, J.J. Gu, Q.L. Chen, J.M.
Zhang, R.R. Miao, Enhanced removal of Cr(VI) from aqueous
solution by supported ZnO nanoparticles on biochar derived
from wastewater hyacinth, Chemosphere, 195 (2018) 632–640.
- C.N. Hamelinck, G.V. Hooijdonk, A.P.C. Faaij, Ethanol from
lignocellulosic biomass: techno-economic performance in
short-, middle- and long-term, Biomass Bioenerg., 28 (2005)
384–410.
- M. Li, Q. Liu, L.J. Guo, Y.P. Zhang, Z.J. Lou, Y. Wang, G.R. Qian,
Cu(II) removal from aqueous solution by Spartina alterniflora derived biochar, Bioresource Technol., 141 (2013) 83–88.
- L.B. Qian, W.Y. Zhang, J.C. Yan, L. Han, Y. Chen, D. Ouyang,
M.F. Chen, Nanoscale zero-valent iron supported by biochars
produced at different temperatures: Synthesis mechanism and
effect on Cr(VI) removal, Environ. Pollut., 223 (2017) 153–160.
- A. Bogusz, P. Oleszczuk, R. Dobrowolski, Application of laboratory
prepared and commercially available biochars to
adsorption of cadmium, copper and zinc ions from water,
Bioresource Technol., 196 (2015) 540–549.
- B.S. Kadu, Y.D. Sathe, A.B. Ingle, R.C. Chikate, K.R. Patil, C.V.
Rode, Efficiency and recycling capability of montmorillonite
supported Fe-Ni bimetallic nanocomposites towards hexavalent
chromium remediation, Appl. Catal. B-Environ., 104 (2011)
407–414.
- S.J. Kwak, J.C. Yoo, H. Moon, K. Baek, Role of clay minerals on
reduction of Cr(VI), Geoderma, 312 (2018) 1–5.
- M. Makehelwala, K.B.S.N. Jinadasa, N. Tanaka, R. Weerasoriya,
Adsorption mechanism of Cr(VI) onto coir pith, Bioremediat.
J., 13 (2009) 188–197.
- P.L. Tang, C.K. Lee, K.S. Low, Z. Zainal, Sorption of Cr(VI) and
Cu(II) in aqueous solution by ethylenediamine modified rice
hull, Environ. Technol., 24 (2003) 1243–1251.
- F. Yang, S.S. Zhang, H.P. Li, S.S. Li, K. Cheng, J.S. Li, D.C.W.
Tsang, Corn straw-derived biochar impregnated with
α-FeOOH nanorods for highly effective copper removal,
Chem. Eng. J., 348 (2018) 191–201.
- R. Fu, X. Zhang, Z. Xu, X.P. Guo, D.S. Bi, W. Zhang, Fast and
highly efficient removal of chromium (VI) using humus-supported
nanoscale zero-valent iron: influencing factors, kinetics
and mechanism, Sep. Purif. Technol., 174 (2017) 362–371.
- N.H. Kera, M. Bhaumik, K. Pillay, S.S. Ray, A. Maity, Selective
removal of toxic Cr(VI) from aqueous solution by adsorption
combined with reduction at a magnetic nanocomposite surface,
J. Colloid Interf. Sci., 503 (2017) 214–228.
- L.B. Qian, W.Y. Zhang, J.C. Yan, L. Han, Y. Chen, D. Ouyang,
M.F. Chen, Nanoscale zero-valent iron supported by biochars
produced at different temperatures: Synthesis mechanism and
effect on Cr(VI) removal, Environ. Pollut., 223 (2017) 153–160.
- R.L. Boxman, S. Goldsmith, Mass and surface conductivity
gain on polymer surfaces metallized using vacuum arc deposition,
Thin Solid Films, 223 (1993) 341–347.
- F. Yamamoto, S. Yamakama, Surface grafting of polyethylene
by mutual irradiation in methyl acrylate vapor. III. Quantitative
surface analysis by x-ray photoelectron spectroscopy, J.
Polym. Sci. Polym. Phys., 17 (1979) 1581–1590.
- T.P. Moffat, R.M. Latanision, R.R. Ruf, An X-ray photoelectron
spectroscopy study of chromium-metalloid alloys-III, Electrochim.
Acta., 40 (1995) 1723–1734.
- E. Desimoni, C. Malitesta, P.G. Zambonin, J.C. Rivière, An x-ray
photoelectron spectroscopic study of some chromium-oxygen
systems, Surf. Interface Anal., 13 (1988) 173–179.