References
- T. Alemayehu, Heavy metal concentration in the urban
environment of Addis Ababa, Ethiopia, Soil Sediment Contam.,
15 (2006) 591–602.
- P.N.M. Schipper, L.T.C. Bonten, A.C.C. Plette, S.W. Moolenaar,
Measures to diminish leaching of heavy metals to surface
waters from agricultural soils, Desalination, 226 (2008) 89–96.
- M. Kato, S. Onuma, Y. Kato, N.D. Thang, I. Yajima, M.Z. Hoque,
H.U. Shekhar, Toxic elements in well water from Malaysia,
Toxicol. Environ. Chem., 9 (2010) 1609–1612.
- J. Godt, F. Scheidig, C. Grosse-Siestrup, V. Esche, P. Brandenburg,
A. Reich, D.A. Groneberg, The toxicity of cadmium and
resulting hazards for human health, J. Occup. Med. Toxicol.,
1 (2006) 22.
- WHO, Guidelines for Drinking Water Quality, First Addendum
to 3rd ed., Vol. 1: Recommendations, World Health Organization,
Geneva, Switzerland, 2006.
- W. Teeyakasem, M. Nishijo, R. Honda, S. Satarug, W. Swaddiwudhipong,
W. Ruangyuttikarn, Monitoring of cadmium
toxicity in a Thai population with high-level environmental
exposure, Toxicol. Lett., 169 (2007) 185–195.
- Y. Mu, X.-J. Zheng, H.-Q. Yu, Determining optimum conditions
for hydrogen production from glucose by an anaerobic culture
using response surface methodology (RSM), Int. J. Hydrogen
Energy, 34 (2009) 7959–7963.
- I. Mironyuk, T. Tatarchuk, Mu. Naushad, H. Vasylyeva,
I. Mykytyn, Highly efficient adsorption of strontium ions by
carbonated mesoporous TiO2, J. Mol. Liq., 285 (2019) 742–753.
- Mu. Naushad, Z.A. ALOthman, Separation of toxic Pb2+ metal
from aqueous solution using strongly acidic cation-exchange
resin: analytical applications for the removal of metal ions
from pharmaceutical formulation, Desal. Water Treat., 53 (2015)
2158–2166.
- M.M. Benjamin, R.S. Sletten, R.P. Bailey, T. Bennett, Sorption
and filtration of metals using iron-oxide-coated sand, Water
Res., 30 (1996) 2609–2620.
- F.L. Fu, Q. Wang, Removal of heavy metal ions from
wastewaters: a review, J. Environ. Manage., 3 (2011) 407–418.
- S. Babel, T.A. Kurniawan, Low-cost adsorbents for heavy metals
uptake from contaminated water: a review, J. Hazard. Mater., 97
(2003) 219–243.
- V.K. Gupta, P.J.M. Carrott, M.M.L. Ribeiro Carrott, Suhas, Lowcost
adsorbents: growing approach to wastewater treatment—
a review, Crit. Rev. Env. Sci. Technol., 39 (2009) 783–842.
- F. Melak, E. Alemayehu, A. Ambelu, E. Van Ranst, G. Du Laing,
Evaluation of natural quartz and zeolitic tuffs for As(V) removal
from aqueous solutions: a mechanistic approach, Int. J. Environ.
Sci. Technol., 15 (2018) 217–230.
- S. Gupta, B.V. Babu, Modeling, simulation, and experimental
validation for continuous Cr(VI) removal from aqueous
solutions using sawdust as an adsorbent, Bioresour. Technol.,
100 (2009) 5633–5640.
- S.S. Gupta, K.G. Bhattacharyya, Immobilization of Pb(II), Cd(II)
and Ni(II) ions on kaolinite and montmorillonite surfaces from
aqueous medium, J. Environ. Manage., 87 (2008) 46–58.
- E. Alemayehu, B. Lennartz, Virgin volcanic rocks: kinetics and
equilibrium studies for the adsorption of cadmium from water,
J. Hazard. Mater., 169 (2009) 395–401.
- E. Alemayehu, B. Lennartz, Adsorptive removal of nickel
from water using volcanic rocks, Appl. Geochem., 25 (2010)
1596–1602.
- M.N. Sepehr, A. Amrane, K.A. Karimaian, M. Zarrabi,
H.R. Ghaffari, Potential of waste pumice and surface modified
pumice for hexavalent chromium removal: characterization,
equilibrium, thermodynamic and kinetic study, J. Taiwan Inst.
Chem. Eng., 45 (2014) 635–647.
- J.-S. Kwon, S.-T. Yun, J.-H. Lee, S.-O, Kim, H.Y. Jo, Removal of
divalent heavy metals (Cd, Cu, Pb, and Zn) and arsenic(III)
from aqueous solutions using scoria: kinetics and equilibria of
sorption, J. Hazard. Mater., 174 (2010) 307–313.
- V. Sarin, T.S. Singh, K.K. Pant, Thermodaynamic and
breakthrough column studies for the selective sorption of
chromium from industrial effluent on activated eucalyptus
bark, Bioresour. Technol., 97 (2006) 1986–1993.
- N.A.A. Nazri, R.S. Azis, H.C. Man, A.H. Shaari, N.M. Saiden,
I. Ismail, Equilibrium studies and dynamic behavior of
cadmium adsorption by magnetite nanoparticles extracted
from mill scales waste, Desal. Water Treat., 171 (2019) 115–131
- S.H. Chen, Q.Y. Yue, B.Y. Gao, Q. Li, X. Xu, K.F. Fu., Adsorption
of hexavalent chromium from aqueous solution by modified
corn stalk: a fixed-bed column study, Bioresour. Technol.,
113 (2012) 114–120.
- H.A. Aziz, M.N. Adlan, K.S. Ariffin, Heavy metals (Cd, Pb,
Zn, Ni, Cu and Cr(III)) removal from water in Malaysia: post
treatment by high quality limestone, Bioresour. Technol.,
99 (2008) 1578–1583.
- C. Reimann, K. Bjorvatn, B. Frengstad, Z. Melaku, R. Tekle-
Haimanot, U. Siewers, Drinking water quality in the Ethiopian
section of the East African Rift Valley I—data and health aspects,
Sci. Total Environ., 311 (2003) 65–80.
- American Water Works Association, AWWA Standard for
Filtering Material, ANSI/AWWA, American National Standard,
1998, pp. B100–96.
- R. Paramasivam, S.K. Gadkari, N.S. Joshi, A.W. Deshpande,
Bituminous coal–a substitute for anthracite filter media in two
layer filtration of water, Indian J. Environ. Health, 16 (1973)
178–188.
- B. Mörgeli, K.J. Ives, New media for effluent filtration, Water
Res., 13 (1979) 1001–1007
- M.I. Al-Wakeel, Characterization and process development
of the Nile diatomaceous sediment, Int. J. Miner. Process.,
92 (2009) 128–136.
- I.-P. Chen, C.-C. Kan, C.M. Futalan, M.J.C. Calagui, S.-S. Lin,
W.C. Tsai, M.-W. Wan, Batch and fixed bed studies: removal of
copper(II) using chitosan-coated kaolinite beads from aqueous
solution, Sustainable Environ. Res., 25 (2015) 73–81.
- M.T. Yagub, T.K. Sen, S. Afroze, H.M. Ang, Fixed-bed dynamic
column adsorption study of methylene blue (MB) onto pine
cone, Desal. Water Treat., 55 (2015) 1026–1039.
- R. Apiratikul, P. Pavasant, Batch and column studies of
biosorption of heavy metals by Caulerpa lentillifera, Bioresour.
Technol., 99 (2008) 2766–2777.
- P. Asaithambi, D. Beyene, A.A.A. Aziz, E. Alemayehu, Removal
of pollutants with determination of power consumption from
landfill leachate wastewater using an electrocoagulation
process: optimization using response surface methodology
(RSM), Appl. Water Sci., 69 (2018) 1–12.
- P. Asaithambi, E. Alemayehu, B. Sajjadi, A.R.A. Aziz, Electrical
energy per order determination for the removal pollutant from
industrial wastewater using UV/Fe2+/H2O2 process: optimization
by response surface methodology, Water Resour. Ind., 18 (2017)
17–32.
- R.H. Myers, D.C. Montgomery, C.M. Anderson-Cook, Response
Surface Methodology: Process and Product Optimization Using
Design Experiments, 2nd ed., John Wiley & Sons, USA, 2009.
- B.-y. Tak, B.-s. Tak, Y.-j. Kim, Y.-j. Park, Y.-h. Yoon, G.-h. Min,
Optimization of color and COD removal from livestock
wastewater by electrocoagulation process: application of Box–
Behnken Design (BBD), J. Ind. Eng. Chem., 28 (2015) 307–315.
- J. Rumky, M.C. Ncibi, R.C. Burgos-Castillo, A. Deb, M. Sillanpää,
Optimization of integrated ultrasonic-Fenton system for metal
removal and dewatering of anaerobically digested sludge by
Box-Behnken Design, Sci. Total Environ., 645 (2018) 573–584.
- L. Adlnasab, N. Shekari, A. Maghsodi, Optimization of arsenic
removal with Fe3O4@Al2O3@Zn-Fe LDH as a new magnetic
nano adsorbent using Box-Behnken design, J. Environ. Chem.
Eng., 7 (2019) 102974.
- F. Gode, E. Moral, Column study on the adsorption of Cr(III)
and Cr(VI) using Pumice, Yarikkaya brown coal, Chelex-100
and Lewatit MP 62, Bioresour. Technol., 99 (2008) 1981–1991.
- E. Alemayehu, S. Thiele-Bruhn, B. Lennartz, Adsorption
behavior of Cr(VI) onto macro and micro-vesicular volcanic
rocks from water, Sep. Purif. Technol., 78 (2011) 51–61.
- E. Alemayehu, F. Melak, S.K. Sharma, B. van der Bruggen,
B. Lennartz, Use of porous volcanic rocks for the adsorptive
removal of copper, Water Environ. J., 31 (2017) 194–201.