References
- R. Costanza, R. d’Arge, R. de Groot, S. Farber, M. Grasso,
B. Hannon, K. Limburg, S. Naeem, R.V. O’Neill, J. Paruelo,
R.G. Raskin, P. Sutton, M. van den Belt, The value of the world’s
ecosystem services and natural capital, Nature, 387 (1997) 253.
- P. Roccaro, C. Barone, G. Mancini, F.G.A. Vagliasindi, Removal
of manganese from water supplies intended for human
consumption: a case study, Desalination, 210 (2007) 205–214.
- I.J. Lee, K.-L. Lee, T.-H. Lim, J.-J. Park, S. Cheon, Determination
of geosmin and 2-MIB in Nakdong River using headspace
solid phase microextraction and GC-MS, J. Anal. Sci. Technol.,
26 (2013) 326–332.
- S.B. Watson, Aquatic taste and odor: a primary signal of
drinking-water integrity, J. Toxicol. Environ. Health Part A,
67 (2004) 1779–1795.
- D. Ellis, C. Bouchard, G. Lantagne, Removal of iron and
manganese from groundwater by oxidation and microfiltration,
Desalination, 130 (2000) 255–264.
- A. Alpatova, S. Verbych, M. Bryk, R. Nigmatullin, N. Hilal,
Ultrafiltration of water containing natural organic matter: heavy
metal removing in the hybrid complexation–ultrafiltration
process, Sep. Purif. Technol., 40 (2004) 155–162.
- B.A.M. Al-Rashdi, D.J. Johnson, N. Hilal, Removal of heavy
metal ions by nanofiltration, Desalination, 315 (2013) 2–17.
- S.B. Wang, Y.L. Peng, Natural zeolites as effective adsorbents
in water and wastewater treatment, Chem. Eng. J., 156 (2010)
11–24.
- P.W. Seo, J.Y. Song, S.H. Jhung, Adsorptive removal of
hazardous organics from water with metal-organic frameworks,
Appl. Chem. Eng., 27 (2016) 358–365.
- W.H. Zou, H.J. Bai, L. Zhao, K. Li, R.P. Han, Characterization
and properties of zeolite as an adsorbent for removal of
uranium(VI) from solution in fixed bed column, J. Radioanal.
Nucl. Chem., 288 (2011) 779–788.
- K. Margeta, N.Z. Logar, M. Šiljeg, A. Farkas, Natural Zeolites in
Water Treatment – How Effective is Their Use, W. Elshorbagy,
R.K. Chowdhury, Water Treatment, InTechOpen, (2013) 81–112,
doi: 10.5772/50738.
- A. Balati, A. Shahbazi, M.M. Amini, S.H. Hashemi, K. Jadidi,
Comparison of the efficiency of mesoporous silicas as
absorbents for removing naphthalene from contaminated
water, Eur. J. Environ. Sci., 4 (2014) 69–75.
- A. Ates, Effect of alkali-treatment on the characteristics of
natural zeolites with different compositions, J. Colloid Interface
Sci., 523 (2018) 266–281.
- C. Wang, S.Z. Leng, H.D. Guo, L.Y. Cao, J.F. Huang, Acid
and alkali treatments for regulation of hydrophilicity/
hydrophobicity of natural zeolite, Appl. Surf. Sci., 478 (2019)
319–326.
- L.E. Burris, M.C.G. Juenger, The effect of acid treatment
on the reactivity of natural zeolites used as supplementary
cementitious materials, Cem. Concr. Res., 79 (2016) 185–193.
- S.-H. Pak, S.-M. Park, J. An, C.-g. Park, Adsorption behavior
of poly(methacrylic acid)/iron-oxide-coated zeolite for the
removal of Mn(II), Fe(II), and As(III) from aqueous solution,
Desal. Water Treat., 123 (2018) 150–155.
- R. Roque, J. de Onate, E. Reguera, E. Navarro, Pyrrole
oligomerization within H-Fe-FAU zeolite, J. Mater. Sci. Lett.,
12 (1993) 1037.
- Y.H. Shin, W.D. Lee, S.S. Im, Effect of A-zeolite on the
crystallization behavior of in-situ polymerized poly(ethylene
terephthalate) (PET) nanocomposites, Macromol. Res., 15 (2007)
662–670.
- S. Karimi, J. Feizy, F. Mehrjo, M. Farrokhnia, Detection and
quantification of food colorant adulteration in saffron sample
using chemometric analysis of FT-IR spectra, RSC Adv., 6 (2016)
23085–23093.
- A. Drmota, A. Košak, A. Znidaršič, A mechanism for the
adsorption of carboxylic acids onto the surface of magnetic
nanoparticles, Mater. Technol., 42 (2008) 79–83.
- Y.S. Ho, G. McKay, The kinetics of sorption of basic dyes from
aqueous solution by sphagnum moss peat, Can. J. Chem. Eng.,
76 (1998) 822–827.
- B. Das, N.K. Mondal, Calcareous soil as a new adsorbent to
remove lead from aqueous solution: equilibrium, kinetic and
thermodynamic study, Univ. J. Environ. Res. Technol., 1 (2011)
515–530.
- M.A.O. Badmus, T.O.K. Audu, B.U. Anyata, Removal of lead
ion from industrial wastewaters by activated carbon prepared
from periwinkle shells, Turk. J. Eng. Environ. Sci., 31 (2007)
251–263.
- H. Spahn, U. Schlünder, The scale-up of activated carbon
columns for water purification, based on results from batch
tests—I: theoretical and experimental determination of
adsorption rates of single organic solutes in batch tests, Chem.
Eng. Sci., 30 (1975) 529–537.
- W.J. Weber, J.C. Morris, Kinetics of adsorption on carbon from
solution, J. Sanitary Eng. Div., 89 (1963) 31–38.