References
- L. Dai, W. Zhu, L. He, F. Tan, N. Zhu, Q. Zhou, M. He, G. Hu,
Calcium-rich biochar from crab shell: an unexpected super
adsorbent for dye removal, Bioresour. Technol., 267 (2018)
510–516.
- M.M. El Bendary, E.K. Radwan, M.F. El-Shahat, Valorization of
secondary resources into silica-based adsorbents: preparation,
characterization and application in dye removal from
wastewater, Environ. Nanotechnol. Monit. Manage., 15 (2021)
100455, doi: 10.1016/j.enmm.2021.100455.
- A. Kheddo, L. Rhyman, M.I. Elzagheid, P. Jeetah, P. Ramasami,
Adsorption of synthetic dyed wastewater using activated
carbon from rice husk, SN Appl. Sci., 2 (2020) 2170, doi: 10.1007/s42452-020-03922-5.
- V.K. Gupta, I. Ali, Suhas, D. Mohan, Equilibrium uptake and
sorption dynamics for the removal of a basic dye (basic red)
using low-cost adsorbents, J. Colloid Interface Sci., 265 (2003)
257–264.
- V.K. Gupta, Suhas, Application of low-cost adsorbents for dye
removal – a review, J. Environ. Manage., 90 (2009) 2313–2342.
- K.S. Bharathi, S.T. Ramesh, Removal of dyes using agricultural
waste as low-cost adsorbents: a review, Appl. Water Sci.,
3 (2013) 773–790.
- S. Jain, R.V. Jayaram, Removal of basic dyes from aqueous
solution by low-cost adsorbent: wood apple shell
(Feronia acidissima), Desalination, 250 (2010) 921–927.
- Y. Zhou, L. Ge, N. Fan, M. Xia, Adsorption of Congo red from
aqueous solution onto shrimp shell powder, Adsorpt. Sci.
Technol., 36 (2018) 1310–1330.
- R. Bushra, S. Mohamad, Y. Alias, Y. Jin, M. Ahmad, Current
approaches and methodologies to explore the perceptive
adsorption mechanism of dyes on low-cost agricultural waste:
a review, Microporous Mesoporous Mater., 319 (2021) 111040,
doi: 10.1016/j.micromeso.2021.111040.
- E.D.V. Giordano, M.E. Brassesco, P. Camiscia, G.A. Picó,
N.W. Valetti, A new alternative and efficient low-cost process
for the removal of reactive dyes in textile wastewater by using
soybean hull as adsorbent, Water Air Soil Pollut., 232 (2021)
1–25.
- K. Bharathi, S. Ramesh, Removal of dyes using agricultural
waste as low-cost adsorbents: a review, Appl. Water Sci.,
3 (2013) 773–790.
- K. Ghosh, N. Bar, A.B. Biswas, S.K. Das, Elimination of crystal
violet from synthetic medium by adsorption using unmodified
and acid-modified eucalyptus leaves with MPR and GA
application, Sustainable Chem. Pharm., 19 (2021) 100370,
doi: 10.1016/j.scp.2020.100370.
- I. Ghosh, S. Kar, T. Chatterjee, N. Bar, S.K. Das, Adsorptive
removal of Safranin-O dye from aqueous medium using
coconut coir and its acid-treated forms: adsorption study,
scale-up design, MPR and GA-ANN modeling, Sustainable
Chem. Pharm., 19 (2021) 100374, doi: 10.1016/j.scp.2021.100374.
- K. Ghosh, N. Bar, A.B. Biswas, S.K. Das, Removal of methylene
blue (aq) using untreated and acid-treated eucalyptus leaves
and GA-ANN modelling, Can. J. Chem. Eng., 97 (2019)
2883–2898.
- S. Bhattacharya, N. Bar, B. Rajbansi, S.K. Das, Adsorptive
elimination of Cu(II) from aqueous solution by chitosannano-SiO2
nanocomposite—adsorption study, MLR, and GA
modeling, Water Air Soil Pollut., 232 (2021) 161, doi: 10.1007/s11270-021-05070-x.
- B. Singha, N. Bar, S.K. Das, The use of artificial neural networks
(ANN) for modeling of adsorption of Cr(VI) ions, Desal. Water
Treat., 52 (2014) 415–425.
- Q. Wang, F. Jiang, X.-K. Ouyang, L.-Y. Yang, Y. Wang,
Adsorption of Pb(II) from aqueous solution by mussel shellbased
adsorbent: preparation, characterization, and adsorption
performance, Materials, 14 (2021) 741, doi: 10.3390/ma14040741.
- L. Ji, W. Song, D. Wei, D. Jiang, L. Cai, Y. Wang, J. Guo, H. Zhang,
Modified mussel shell powder for microalgae immobilization
to remove N and P from eutrophic wastewater, Bioresour.
Technol., 284 (2019) 36–42.
- L. He, J. Meng, Y. Wang, X. Tang, X. Liu, C. Tang, L.Q. Ma,
J. Xu, Attapulgite and processed oyster shell powder effectively
reduce cadmium accumulation in grains of rice growing in a
contaminated acidic paddy field, Ecotoxicol. Environ. Saf.,
209 (2021) 111840, doi: 10.1016/j.ecoenv.2020.111840.
- C. Xia, X. Zhang, L. Xia, Heavy metal ion adsorption by
permeable oyster shell bricks, Constr. Build. Mater., 275 (2021)
122128, doi: 10.1016/j.conbuildmat.2020.122128.
- S. Chowdhury, P. Saha, Sea shell powder as a new adsorbent to
remove Basic Green 4 (Malachite green) from aqueous solutions:
equilibrium, kinetic and thermodynamic studies, Chem. Eng. J.,
164 (2010) 168–177.
- J.-I. Lee, J.-K. Kang, S.-H. Hong, C.-G. Lee, S. Jeong, S.-J. Park,
Thermally treated Mytilus coruscus shells for fluoride removal
and their adsorption mechanism, Chemosphere, 263 (2021)
128328, doi:10.1016/j.chemosphere.2020.128328.
- W. Kim, R. Singh, J.A. Smith, Modified crushed oyster shells
for fluoride removal from water, Sci. Rep., 10 (2020) 5759,
doi: 10.1038/s41598-020-60743-7.
- N.A.A. Salim, N.H. Abdullah, M.R. Khairuddin,
M.A.Z.R. Arman, M.H. Khamidun, M.A. Fulazzaky,
A.R.M. Yusoff, M.H.D. Othman, M.H. Puteh, Adsorption of
phosphate from aqueous solutions using waste mussel shell,
MATEC Web Conf., The 12th International Civil Engineering
Post Graduate Conference (SEPKA) – The 3rd International
Symposium on Expertise of Engineering Design (ISEED)
(SEPKA-ISEED 2018), 250 (2018) 06013.
- C. Namasivayam, A. Sakoda, M. Suzuki, Removal of phosphate
by adsorption onto oyster shell powder—kinetic studies,
J. Chem. Technol. Biotechnol., 80 (2005) 356–358.
- W.F. Sye, Y.C. Chen, S.F. Wu, Evaluation of natural porous crab
shell powder used for the enrichment of sulfur compounds
from gaseous samples, J. Chin. Chem. Soc., 50 (2003) 73–79.
- A. Das, N. Bar, S.K. Das, Adsorptive removal of Pb(II) ion on
Arachis hypogaea’s shell: batch experiments, statistical, and GA
modeling, Int. J. Environ. Sci. Technol., (2022), doi: 10.1007/s13762-021-03842-w.
- F. Zhu, J. Ma, Q. Ji, H. Cheng, S. Komarneni, Visible-lightdriven
activation of sodium persulfate for accelerating Orange
II degradation using ZnMn2O4 photocatalyst, Chemosphere,
278 (2021) 130404, doi:10.1016/j.chemosphere.2021.130404.
- F. Zhu, Q. Ji, Y. Lei, J. Ma, Q. Xiao, Y. Yang, S. Komarneni,
Efficient degradation of Orange II by core shell
CoFe2O4–CeO2 nanocomposite with the synergistic effect from sodium
persulfate, Chemosphere, 291 (2022) 132765, doi: 10.1016/j.chemosphere.2021.132765.
- B. Sarkar, Y. Xi, M. Megharaj, R. Naidu, Orange II adsorption
on palygorskites modified with alkyl trimethylammonium
and dialkyl dimethylammonium bromide—an isothermal and
kinetic study, Appl. Clay Sci., 51 (2011) 370–374.
- S. Mubarak, M. Zia-ur-Rehman, M.N. Chaudhry, Modified
eggshells as cost effective adsorbent for the treatment of
arsenic(III) contaminated industrial effluents, Asian J. Chem.,
27 (2015) 1995–2000.
- H. Yin, L. Liu, M. Lv, L. Feng, J. Zhou, Metal-modified mussel
shell for efficient binding of phosphorus in eutrophic waters,
Int. J. Environ. Res., 14 (2020) 135–143.
- J. Ma, J. Zou, B. Cui, C. Yao, D. Li, Adsorption of Orange II dye
from aqueous solutions using phosphoric-acid modified clam
shell powder, Desal. Water Treat., 51 (2013) 6536–6544.
- J.N. Murphy, C.M. Schneider, K. Hawboldt, F.M. Kerton, Hard
to soft: biogenic absorbent sponge-like material from waste
mussel shells, Matter, 3 (2020) 2029–2041.
- D. Zhang, K. Zhang, X. Hu, Q. He, J. Yan, Y. Xue, Cadmium
removal by MgCl2 modified biochar derived from crayfish
shell waste: batch adsorption, response surface analysis
and fixed bed filtration, J. Hazard. Mater., 408 (2021) 124860,
doi: 10.1016/j.jhazmat.2020.124860.
- R. Slimani, I. El Ouahabi, S. Benkaddour, H. Hiyane,
M. Essoufy, Y. Achour, S. El Antri, S. Lazar, M. El Haddad,
Removal efficiency of textile dyes from aqueous solutions using
calcined waste of eggshells as eco-friendly adsorbent: kinetic
and thermodynamic studies, Chem. Biochem. Eng. Q., 35 (2021)
43–56.
- B. Zhao, J.-e. Zhang, W. Yan, X. Kang, C. Cheng, Y. Ouyang,
Removal of cadmium from aqueous solution using waste
shells of golden apple snail, Desal. Water Treat., 57 (2016)
23987–24003.
- H.T. Van, L.H. Nguyen, X.H. Nguyen, T.H. Nguyen, T.V. Nguyen,
S. Vigneswaran, J. Rinklebe, H.N. Tran, Characteristics and
mechanisms of cadmium adsorption onto biogenic aragonite
shells-derived biosorbent: batch and column studies, J. Environ.
Manage., 241 (2019) 535–548.
- X. Wang, Z. Zhang, Y. Zhao, K. Xia, Y. Guo, Z. Qu, R. Bai, A mild
and facile synthesis of amino functionalized CoFe2O4@SiO2 for
Hg(II) removal, Nanomaterials, 8 (2018) 673, doi: doi: 10.3390/nano8090673.
- Y. Shen, N. Jiang, S. Liu, C. Zheng, X. Wang, T. Huang, Y. Guo,
R. Bai, Thiol functionalization of short channel SBA-15 through
a safe, mild and facile method and application for the removal
of mercury(II), J. Environ. Chem. Eng., 6 (2018) 5420–5433.
- J. Shen, S. Zhang, Z. Zeng, J. Huang, Y. Shen, Y. Guo, Synthesis
of magnetic short-channel mesoporous silica SBA-15 modified
with a polypyrrole/polyaniline copolymer for the removal of
mercury ions from aqueous solution, ACS Omega, 6 (2021)
25791–25806.
- Z. Zhang, K. Xia, Z. Pan, C. Yang, X. Wang, G. Zhang,
Y. Guo, R. Bai, Removal of mercury by magnetic nanomaterial
with bifunctional groups and core-shell structure:
synthesis, characterization and optimization of adsorption
parameters, Appl. Surf. Sci., 500 (2020) 143970, doi: 10.1016/j.apsusc.2019.143970.
- S. Dandil, D.A. Sahbaz, C. Acikgoz, High performance
adsorption of hazardous triphenylmethane dye-crystal violet
onto calcinated waste mussel shells, Water Qual. Res. J.,
54 (2019) 249–256.
- S. Gao, W. Zhang, Z. An, S. Kong, D. Chen, Adsorption of anionic
dye onto magnetic Fe3O4/CeO2 nanocomposite: equilibrium,
kinetics, and thermodynamics, Adsorpt. Sci. Technol., 37 (2019)
185–204.
- A.G. El-Shamy, An efficient removal of methylene blue dye
by adsorption onto carbon dot @ zinc peroxide embedded
poly vinyl alcohol (PVA/CZnO2) nano-composite: a novel
reusable adsorbent, Polymer, 202 (2020) 122565, doi: 10.1016/j.polymer.2020.122565.
- L. Ji, Q. Xiao, L. Zhu, S. Komarneni, J. Ma, CDs@Cr2O3
catalytic degradation of Orange II based on non-radical
pathway, Mater. Chem. Phys., 287 (2022) 126257, doi: 10.1016/j.
matchemphys.2022.126257.
- B. Qiu, J. Guo, X. Zhang, D. Sun, H. Gu, Q. Wang, H. Wang,
X. Wang, X. Zhang, B.L. Weeks, Polyethylenimine facilitated
ethyl cellulose for hexavalent chromium removal with a wide
pH range, ACS Appl. Mater. Interfaces, 6 (2014) 19816–19824.
- B. Qiu, J. Guo, X. Zhang, D. Sun, H. Gu, Q. Wang, H. Wang,
X. Wang, X. Zhang, B.L. Weeks, Z. Guo, S. Wei, Polyethylenimine
facilitated ethyl cellulose for hexavalent chromium removal
with a wide pH range, ACS Appl. Mater. Interfaces, 6 (2014)
19816–19824.
- D. Mohan, K.P. Singh, G. Singh, K. Kumar, Removal of dyes
from wastewater using flyash, a low-cost adsorbent, Ind. Eng.
Chem. Res., 41 (2002) 3688–3695.
- K.G. Akpomie, F.A. Dawodu, Efficient abstraction of nickel(II)
and manganese(II) ions from solution onto an alkaline-modified
montmorillonite, J. Taibah Univ. Sci., 8 (2014) 343–356.
- S. Meski, N. Tazibt, H. Khireddine, S. Ziani, W. Biba,
S. Yala, D. Sidane, F. Boudjouan, N. Moussaoui, Synthesis of
hydroxyapatite from mussel shells for effective adsorption
of aqueous Cd(II), Water Sci. Technol., 80 (2019) 1226–1237.
- Y. Liu, Y.-J. Liu, Biosorption isotherms, kinetics and
thermodynamics, Sep. Purif. Technol., 61 (2008) 229–242.
- C. Hung-Lung, L. Kuo-Hsiung, C. Shih-Yu, C. Ching-Guan,
P. San-De, Dye adsorption on biosolid adsorbents and
commercially activated carbon, Dyes Pigm., 75 (2007) 52–59.
- X. Jin, M.-q. Jiang, X.-q. Shan, Z.-g. Pei, Z. Chen, Adsorption of
methylene blue and Orange II onto unmodified and surfactantmodified
zeolite, J. Colloid Interface Sci., 328 (2008) 243–247.
- X. Jin, B. Yu, Z. Chen, J.M. Arocena, R.W. Thring, Adsorption
of Orange II dye in aqueous solution onto surfactant-coated
zeolite: characterization, kinetic and thermodynamic studies,
J. Colloid Interface Sci., 435 (2014) 15–20.
- J.F. Ma, J.M. Yu, B.Y. Cui, D.L. Li, J. Dai, Adsorption and catalysis
of Orange II from wastewater by inorganic–organic bentonite,
Adv. Mater. Res., 340 (2012) 236–240.
- V. Gupta, A. Mittal, V. Gajbe, J. Mittal, Removal and recovery of
the hazardous azo dye acid orange 7 through adsorption over
waste materials: bottom ash and de-oiled soya, Ind. Eng. Chem.
Res., 45 (2006) 1446–1453.