References
- M.M. Rahman, M. Adil, A.M. Yusof, Y.B. Kamaruzzaman,
R.H. Ansary, Removal of heavy metal ions with acid activated
carbons derived from oil palm and coconut shells, Materials
(Basel), 7 (2014) 3634–3650.
- M.H. Al-Malack, A.A. Basaleh, Adsorption of heavy metals
using activated carbon produced from municipal organic solid
waste, Desal. Wat. Treat., 57 (2016) 24519–24531.
- M. Adib, Z. Al-Qodah, C.W.Z. Ngah, M.A. Yahya, Agricultural bio-waste materials as potential
sustainable precursors used for activated carbon production: a
review, Renew. Sustain. Energy Rev., 46 (2015) 218–235.
- S. Hokkanen, A. Bhatnagar, M. Sillanpää, A review on
modification methods to cellulose-based adsorbents to improve
adsorption capacity, Water Res., 91 (2016) 156–173.
- W.S. Wan Ngah, M.A.K.M. Hanafiah, Removal of heavy metal
ions from wastewater by chemically modified plant wastes as
adsorbents: a review, Bioresour. Technol., 99 (2008) 3935–3948.
- M.-L. Chen, C.-B. Gu, T. Yang, Y. Sun, J.-H. Wang, A green
sorbent of esterified egg-shell membrane for highly selective
uptake of arsenate and speciation of inorganic arsenic, Talanta,
116 (2013) 688–694.
- A. Mittal, M. Teotia, R.K. Soni, J. Mittal, Applications of egg
shell and egg shell membrane as adsorbents: a review, J. Mol.
Liq., 223 (2016) 376–387.
- U. Kumar, M. Bandyopadhyay, Sorption of cadmium from
aqueous solution using pretreated rice husk, Bioresour.
Technol., 97 (2006) 104–109.
- M. Sćiban, M. Klasnja, B. Skrbić, Modified softwood sawdust
as adsorbent of heavy metal ions from water, J. Hazard. Mater.,
136 (2006) 266–271.
- M. Shakirullah, I. Ahmad, S. Shah, Sorption studies of nickel
ions onto sawdust of Dalbergia sissoo, J. Chin. Chem. Soc.,
53 (2006) 1045–1052.
- B. Nasernejad, T.E. Zadeh, B.B. Pour, M.E. Bygi, A. Zamani,
Camparison for biosorption modeling of heavy metals (Cr (III),
Cu (II), Zn (II)) adsorption from wastewater by carrot residues,
Process Biochem., 40 (2005) 1319–1322.
- Q. Li, J. Zhai, W. Zhang, M. Wang, J. Zhou, Kinetic studies of
adsorption of Pb(II), Cr(III) and Cu(II) from aqueous solution
by sawdust and modified peanut husk, J. Hazard. Mater.,
141 (2007) 163–167.
- O. Karnitz, L.V.A. Gurgel, J.C.P. de Melo, V.R. Botaro, T.M.S.
Melo, R.P. de Freitas Gil, L.F. Gil, Adsorption of heavy metal
ion from aqueous single metal solution by chemically modified
sugarcane bagasse, Bioresour. Technol., 98 (2007) 1291–1297.
- U.S. Orlando, A.U. Baes, W. Nishijima, M. Okada, Preparation
of chelating agents from sugarcane bagasse by microwave
radiation as an alternative ecologically benign procedure,
Green Chem., 4 (2002) 555–557.
- S.H. Min, J.S. Han, E.W. Shin, J.K. Park, Improvement of
cadmium ion removal by base treatment of juniper fiber, Water
Res., 38 (2004) 1289–1295.
- R. Slimani, I. El Ouahabi, F. Abidi, M. El Haddad, A. Regti,
M.R. Laamari, S. El Antri, S. Lazar, Calcined eggshells as a
new biosorbent to remove basic dye from aqueous solutions:
thermodynamics, kinetics, isotherms and error analysis,
J. Taiwan Inst. Chem. Eng., 45 (2014) 1578–1587.
- M.F. Elkady, A.M. Ibrahim, M.M.A. El-Latif, Assessment of
the adsorption kinetics, equilibrium and thermodynamic
for the potential removal of reactive red dye using eggshell
biocomposite beads, Desalination, 278 (2011) 412–423.
- B. Liu, Y. Huang, Polyethyleneimine modified eggshell
membrane as a novel biosorbent for adsorption and
detoxification of Cr(VI) from water, J. Mater. Chem., 21 (2011)
17413.
- X. Guo, F. Zhang, Q. Peng, S. Xu, X. Lei, D.G. Evans, X. Duan,
Layered double hydroxide/eggshell membrane: an inorganic
biocomposite membrane as an efficient adsorbent for Cr (VI)
removal, Chem. Eng. J., 166 (2011) 81–87.
- D. Chen, X. Xiao, K. Yang, Removal of phosphate and
hexavalent chromium from aqueous solutions by engineered
waste eggshell, RSC Adv., 6 (2016) 35332–35339.
- M. Ikram, A.U. Rehman, S. Ali, S. Ali, S.U.H. Bakhtiar, S. Alam,
The adsorptive potential of chicken egg shells for the removal
of oxalic acid from wastewater, J. Biomed. Eng. Informatics,
2 (2016) 118.
- M.A. Zulfikar, E. Novita, R. Hertadi, S.D. Djajanti, Removal of
humic acid from peat water using untreated powdered eggshell
as a low cost adsorbent, Int. J. Environ. Sci. Technol., 10 (2013)
1357–1366.
- R. Ahmad, R. Kumar, S. Haseeb, Adsorption of Cu2+ from
aqueous solution onto iron oxide coated eggshell powder:
evaluation of equilibrium, isotherms, kinetics, and regeneration
capacity, Arab. J. Chem., 5 (2012) 353–359.
- S. Wang, M. Wei, Y. Huang, Biosorption of multifold toxic heavy
metal ions from aqueous water onto food residue eggshell
membrane functionalized with ammonium thioglycolate,
J. Agric. Food Chem., 61 (2013) 4988–4996.
- M.A.R. Soares, S. Marto, M.J. Quina, L. Gando-Ferreira,
R. Quinta-Ferreira, Evaluation of eggshell-rich compost as
biosorbent for removal of Pb (II) from aqueous solutions, Water
Air Soil Pollut., 227 (2016) 150.
- S. Meski, S. Ziani, H. Khireddine, Removal of lead ions by
hydroxyapatite prepared from the egg shell, J. Chem. Eng.
Data, 55 (2010) 3923–3928.
- D. Liao Dexiang, W. Zheng, X. Li, Q. Yang, X. Yue, L. Guo,
G. Zeng, Removal of lead(II) from aqueous solutions using
carbonate hydroxyapatite extracted from eggshell waste,
J. Hazard. Mater., 177 (2010) 126–130.
- A.M. Ghaedi, M. Ghaedi, A. Vafaei, N. Iravani, M. Keshavarz, M.
Rad, I. Tyagi, S. Agarwal, V.K. Gupta, Adsorption of copper (II)
using modified activated carbon prepared from Pomegranate
wood: optimization by bee algorithm and response surface
methodology, J. Mol. Liq., 206 (2015) 195–206.
- S. Brunauer, P.H. Emmett, E. Teller, Adsorption of gases in
multimolecular layers, J. Am. Chem. Soc., 60 (1938) 309–319.
- A. Yasukawa, T. Yokoyama, K. Kandori, T. Ishikawa, Reaction of
calcium hydroxyapatite with Cd2+ and Pb2+ ions, Colloids Surf.,
A, 299 (2007) 203–208.
- S.H. Jang, B.G. Min, Y.G. Jeong, W.S. Lyoo, S.C. Lee, Removal of
lead ions in aqueous solution by hydroxyapatite/polyurethane
composite foams, J. Hazard. Mater., 152 (2008) 1285–1292.
- W.T. Tsai, J.M. Yang, C.W. Lai, Y.H. Cheng, C.C. Lin, C.W. Yeh,
Characterization and adsorption properties of eggshells and
eggshell membrane, Bioresour. Technol., 97 (2006) 488–493.
- E.G.D. Girma, W. Woyessa, B.B.L. Srivastava, Synthesis of
hydrous aluminum (III)-iron (III)-manganese (IV) ternary
mixed oxide for fluoride removal, Int. J. Sci. Eng. Res., 5 (2014)
885–892.
- M. Ahmad, M. Ahmad, A.R.A. Usman, A.S. Al-Faraj, Y.S. Ok,
Q. Hussain, A.S. Abduljabbar, M.I. Al-Wabel, An efficient
phosphorus scavenging from aqueous solution using
magnesiothermally modified bio-calcite, Environ. Technol.
(United Kingdom), 39 (2018) 1638–1649.
- J.S. Markovski, V. Crossed, D. Signokić, M. Milosavljević,
M. Mitrić, A.A. Perić-Grujić, A.E. Onjia, A.D. Marinković,
Ultrasonic assisted arsenate adsorption on solvothermally
synthesized calcite modified by goethite, α-MnO2 and goethite/α-MnO2, Ultrason. Sonochem., 21 (2014) 790–801.
- J.V. Flores-Cano, R. Leyva-Ramos, J. Mendoza-Barron,
R.M. Guerrero-Coronado, A. Aragón-Piña, G.J. Labrada-Delgado, Sorption mechanism of Cd(II) from water solution
onto chicken eggshell, Appl. Surf. Sci., 276 (2013) 682–690.
- A.A. Alqadami, M. Naushad, M.A. Abdalla, T. Ahamad,
Z. Abdullah ALOthman, S.M. Alshehri, A.A. Ghfar, Efficient
removal of toxic metal ions from wastewater using a
recyclable nanocomposite: a study of adsorption parameters
and interaction mechanism, J. Cleaner Prod., 156 (2017)
426–436.
- M. Naushad, Z.A. ALOthman, Inamuddin, H. Javadian,
Removal of Pb(II) from aqueous solution using ethylene
diamine tetra acetic acid-Zr(IV) iodate composite cation
exchanger: kinetics, isotherms and thermodynamic studies,
J. Ind. Eng. Chem., 25 (2015) 35–41.
- G. Sposito, Distinguishing adsorption from surface precipitation,
Geochem. Processes Miner. Surf., 323 (1986) 217–228.
- M. Ahmad, Y. Hashimoto, D.H. Moon, S.S. Lee, Y.S. Ok,
Immobilization of lead in a Korean military shooting range
soil using eggshell waste: an integrated mechanistic approach,
J. Hazard. Mater., 209–210 (2012) 392–401.
- T.A. Saleh, M. Tuzen, A. Sarı, Polyamide magnetic palygorskite
for the simultaneous removal of Hg(II) and methyl mercury;
with factorial design analysis, J. Environ. Manage., 211 (2018)
323–333.