References
- T. Jintakosol, W. Nitayaphat, Adsorption of silver(I) from
aqueous solution using chitosan/montmorillonite composite
beads, Mater. Res., 19 (2016) 1114–1121.
- Y. Xiong, L. Wan, J. Xuan, Y. Wang, Z. Xing, W. Shan, Z. Lou,
Selective recovery of Ag(I) coordination anion from simulate
nickel electrolyte using corn stalk based adsorbent modified
by ammonia–thiosemicarbazide, J. Hazard. Mater., 301 (2016)
277–285.
- W.C. Butterman, H.E. Hilliard, Mineral Commodity Profiles:
Silver, U.S. Geological Survey, Open-File Report 2004-1251,
United States, 2004. Available at http://pubs.usgs.gov/
of/2004/1251/index.html
- W. Sim, R.T. Barnard, M.A.T. Blaskovich, Z.M. Ziora, Antimicrobial
silver in medicinal and consumer applications: a
patent review of the past decade (2007–2017), Antibiotics,
7 (2018) 93, doi: 10.3390/antibiotics7040093.
- D.E. Marx, D.J. Barillo, Silver in medicine: the basic science,
Burns., 40 (2014) S9–S18.
- Z. Çelik, M. Gülfen, A.O. Aydın, Synthesis of a novel
dithiooxamide–formaldehyde resin and its application to the
adsorption and separation of silver ions, J. Hazard. Mater.,
174 (2010) 556–562.
- C. Jeon, Adsorption of silver ions from industrial wastewater
using waste coffee grounds, Korean J. Chem. Eng., 34 (2017)
384–391.
- A. Sarı, M. Tüzen, Adsorption of silver from aqueous solution
onto raw vermiculite and manganese
oxide-modified
vermiculite, Microporous Mesoporous Mater., 170 (2013)
155–163.
- P. Staroń, J. Chwastowski, M. Banach, Sorption and desorption
studies on silver ions from aqueous solution by coconut fiber,
J. Cleaner Prod., 149 (2017) 290–301.
- H. Huo, H. Su, T. Tan, Adsorption of Ag+ by a surface molecularimprinted
biosorbent, Chem. Eng. J., 150 (2009) 139–144.
- A. Behnamfard, M.M. Salarirad, F. Veglio, Process
development for recovery of copper and precious metals from
waste printed circuit boards with emphasize on palladium
and gold leaching and precipitation, Waste Manage., 33 (2013)
2354–2363.
- J. Stejskal, M. Trchová, L. Brožová, J. Prokeš, Reduction of
silver nitrate by polyaniline nanotubes to produce silverpolyaniline
composites, Chem. Pap., 63 (2009) 77–83.
- J.L. Manzoori, G. Karim-Nezhad, Selective cloud point
extraction and preconcentration of trace amounts of silver
as a dithizone complex prior to flame atomic absorption
spectrometric determination, Anal. Chim. Acta, 484 (2003)
155–161.
- H. Abdolmohammad-Zadeh, Z. Javan, Silica-coated Mn3O4
nanoparticles coated with an ionic liquid for use in solid-phase
extraction of silver(I) ions prior to their determination by AAS,
Microchim. Acta, 182 (2015) 1447–1456.
- S. Virolainen, M. Tyster, M. Haapalainen, T. Sainio, Ion-exchange
recovery of silver from concentrated base metalchloride
solutions, Hydrometallurgy, 152 (2015) 100–106.
- Q. Sun, Y. Li, T. Tang, Z. Yuan, C.-P. Yu, Removal of silver
nanoparticles by coagulation processes, J. Hazard. Mater.,
261 (2013) 414–420.
- E. Yapıcı, A. Özkan, Z. Günkaya, M. Banar, The sequential
adsorption of gold, copper, silver, and palladium from pyrolysis
solid product leach solution of waste PCBS, Environ. Eng. Res.,
27 (2022), doi: 10.4491/eer.2021.404.
- I.S. Bădescu, D. Bulgariu, I. Ahmad, L. Bulgariu, Valorisation
possibilities of exhausted biosorbents loaded with metal ions–a
review, J. Environ. Manage., 224 (2018) 288–297.
- X. Song, P. Gunawan, R. Jiang, S.S.J. Leong, K. Wang, R. Xu,
Surface activated carbon nanospheres for fast adsorption of
silver ions from aqueous solutions, J. Hazard. Mater., 194 (2011)
162–168.
- J.-H. Ho, Y.-N. Yeh, H.-W. Wang, S.K. Khoo, Y.-H. Chen,
C.-F. Chow, Removal of nickel and silver ions using eggshells
with membrane, eggshell membrane, and eggshells, Food Sci.
Technol. Res., 20 (2014) 337–343.
- Y. Qing, Y. Hang, R. Wanjaul, Z. Jiang, B. Hu, Adsorption
behavior of noble metal ions (Au, Ag, Pd) on nanometersize
titanium dioxide with ICP-AES, Anal. Sci., 19 (2003)
1417–1420.
- P. Praus, M. Turicová, M. Valásková, Study of silver adsorption
on montmorillonite, J. Braz. Chem. Soc., 19 (2008) 549–556.
- H. Ghassabzadeh, A. Mohadespour, M. Torab-Mostaedi,
P. Zaheri, M.G. Maragheh, H. Taheri, Adsorption of Ag, Cu and
Hg from aqueous solutions using expanded perlite, J. Hazard.
Mater., 177 (2010) 950–955.
- O. Długosz, M. Banach, Kinetic, isotherm and thermodynamic
investigations of the adsorption of Ag+ and Cu2+ on vermiculite,
J. Mol. Liq., 258 (2018) 295–309.
- A. Karabakan, S. Karabulut, A. Denizli, Y. Yürüm, Removal of
silver(I) from aqueous solutions with low-rank Turkish coals,
Adsorpt. Sci. Technol., 22 (2004) 135–144.
- T. Madrakian, A. Afkhami, M.A. Zolfigol, M. Solgi, Separation,
preconcentration and determination of silver ion from water
samples using silica gel modified with 2,4,6-trimorpholino-1,3,5-triazin, J. Hazard. Mater., 128 (2006) 67–72.
- H. Shooshtary, L. Hajiaghababaei, A. Badiei, M.R. Ganjali,
G. Mohammadi Ziarani, Efficient removal of Ag+ and Cu2+
using imine-modified/mesoporous silica-coated magnetic
nanoparticles, Adv. Environ. Technol., 4 (2018) 223–231.
- S. Wang, H. Li, X. Chen, M. Yang, Y. Qi, Selective adsorption of
silver ions from aqueous solution using polystyrene-supported
trimercaptotriazine resin, J. Environ. Sci., 24 (2012) 2166–2172.
- K.Z. Elwakeel, A.S. Al-Bogami, E. Guibal,
2-mercaptobenzimidazole derivative of chitosan for silver
sorption–contribution of magnetite incorporation and
sonication effects on enhanced metal recovery, Chem. Eng. J.,
403 (2021) 126265, doi: 10.1016/j.cej.2020.126265.
- S.M. Hasany, M.M. Saeed, M. Ahmed, Sorption of traces of
silver ions onto polyurethane foam from acidic solution,
Talanta, 54 (2001) 89–98.
- M. Pilśniak-Rabiega, J. Wolska, Novel functional polymers
for recovery of silver, Physicochem. Probl. Miner. Process.,
57 (2021) 142453, doi: 10.37190/ppmp/142453.
- X. Yin, J. Long, Y. Xi, X. Luo, Recovery of silver from wastewater
using a new magnetic photocatalytic ion-imprinted polymer,
ACS Sustainable Chem. Eng., 5 (2017) 2090–2097.
- H.-S. Zou, Z.-Q. Chu, L. Gang, A novel recovery technology
of trace precious metals from waste water by combining
agglomeration and adsorption, Trans. Nonferrous Met. Soc.
China, 17 (2007) 858–863.
- S.M. Hasany, R. Ahmad, Removal of traces of silver ions from
aqueous solutions using coconut husk as a sorbent, Sep. Sci.
Technol., 39 (2005) 3509–3525.
- S.F.M. Hanafiah, N.F.M. Salleh, N.A. Ghafar, M. Shukri,
N.H.N. Kamarudin, M.B. Hapani, R. Jusoh, Efficiency of coconut
husk as agricultural adsorbent in removal of chromium and
nickel ions from aqueous solution, IOP Conf. Ser.: Earth Environ.
Sci., 596 (2020) 012048, doi: 10.1088/1755-1315/596/1/012048.
- C. Aravind, K. Chanakya, K. Mahindra, Removal of heavy
metals from industrial waste water using coconut coir, Int. J.
Civ. Eng., 8 (2017) 1869–1871.
- D. Verma, P. Gope, A. Shandilya, A. Gupta, M. Maheshwari, Coir
fibre reinforcement and application in polymer composites,
J. Mater. Environ. Sci., 4 (2013) 263–276.
- F. Kausar, N. Khalid, M. Mirza, M. Dinc, Influence of electrolytes
on decontamination of Cu(II) ions by surface of coconut coir,
J. Optoelectron. Biomed. Mater., 9 (2017) 107–119.
- K. Begum, M. Islam, M. Huque, Investigation on the tensile
and flexural properties of coir-fibre-reinforced polypropylene
composites, J. Sci. Res., 7 (2015) 97–111.
- K. Conrad, H.C.B. Hansen, Sorption of zinc and lead on coir,
Bioresour. Technol., 98 (2007) 89–97.
- X. Guo, S. Zhang, X.-Q. Shan, Adsorption of metal ions on
lignin, J. Hazard. Mater., 151 (2008) 134–142.
- T. Hajeeth, Adsorption of Cr(VI) from aqueous solutions using
cellulose extracted from sisal fiber, Indian J. Appl. Res., 3 (2013)
1–5.
- M. Chaudhuri, S. Saminal, Coconut coir activated carbon:
an adsorbent for removal of lead from aqueous solution,
WIT Trans. Ecol. Environ., 148 (2011) 95–104.
- J. Tariq, K. Nasir, M.L. Mirza, Kinetics, equilibrium and
thermodynamics of cerium removal by adsorption on low-rank
coal, Desal. Water Treat., 89 (2017) 240–249.
- Y. Zhang, A. Ghaly, B. Li, Physical properties of rice residues as
affected by variety and climatic and cultivation conditions in
three continents, Am. J. Appl. Sci., 9 (2012) 1757–1768.
- S.K. Kazy, S. D’souza, P. Sar, Uranium and thorium sequestration
by a Pseudomonas sp.: mechanism and chemical
characterization, J. Hazard. Mater., 163 (2009) 65–72.
- S.K. Kazy, P. Sar, S. Singh, A.K. Sen, S. D’souza, Extracellular
polysaccharides of a copper-sensitive and a copper-resistant
pseudomonas aeruginosa strain: synthesis, chemical nature
and copper binding, World J. Microbiol. Biotechnol., 18 (2002)
583–588.
- V.C. Srivastava, I.D. Mall, I.M. Mishra, Characterization of
mesoporous rice husk ash (RHA) and adsorption kinetics of
metal ions from aqueous solution onto RHA, J. Hazard. Mater.,
134 (2006) 257–267.
- M.H. Gonzalez, G.C. Araújo, C.B. Pelizaro, E.A. Menezes,
S.G. Lemos, G.B. De Sousa, A.R.A. Nogueira, Coconut coir as
biosorbent for Cr(VI) removal from laboratory wastewater,
J. Hazard. Mater., 159 (2008) 252–256.
- V. Vimonses, B. Jin, C.W. Chow, C. Saint, An adsorption–
photocatalysis hybrid process using multi-functionalnanoporous
materials for wastewater reclamation, Water Res.,
44 (2010) 5385–5397.
- L.N. Nemeş, L. Bulgariu, Optimization of process parameters
for heavy metals biosorption onto mustard waste biomass,
Open Chem., 14 (2016) 175–187.
- J.A. Hefne, W.K. Mekhemer, N.M. Alandis, O.A. Aldayel,
T. Alajyan, Removal of silver(I) from aqueous solutions by
natural bentonite, JKAU: Sci., 22 (2010) 155–176.
- N.K. Mondal, A. Samanta, S. Chakraborty, W.A. Shaikh,
Enhanced chromium(VI) removal using banana peel dust:
isotherms, kinetics and thermodynamics study, Sustainable
Water Resour. Manage., 4 (2018) 489–497.
- W.J. Weber Jr., J.C. Morris, Kinetics of adsorption on carbon
from solution, J. Sanit. Eng. Div., 89 (1963) 31–59.
- D. Reichenberg, Properties of ion-exchange resins in relation
to their structure. III. Kinetics of exchange, J. Am. Chem. Soc.,
75 (1953) 589–597.
- S. Sultana, K. Islam, M.A. Hasan, H.M. Jawad Khan, M. Azizur
R. Khan, A. Deb, M. Al Raihan, Md. Wasikur Rahman,
Adsorption of crystal violet dye by coconut husk powder:
isotherm, kinetics and thermodynamics perspectives, Environ.
Nanotechnol. Monit. Manage., 17 (2022) 100651, doi: 10.1016/j.enmm.2022.100651.
- K. Hayat, Studies on sorption of methylene blue over Cedrus
deodara saw, (2017) 97.
- M. Batool, T. Javed, M. Wasim, S. Zafar, M.I. Din, Exploring
the usability of Cedrus deodara sawdust for decontamination of
wastewater containing crystal violet dye, Desal. Water Treat.,
224 (2021) 433–448.
- A. Bukhari, T. Javed, M.N. Haider, Adsorptive exclusion
of crystal violet dye from wastewater by using fish scales
as an adsorbent, J. Dispersion Sci. Technol., (2022) 1–12,
doi: 10.1080/01932691.2022.2059506.
- M.S. Imran, T. Javed, I. Areej, M.N. Haider, Sequestration of
crystal violet dye from wastewater using low-cost coconut
husk as a potential adsorbent, Water Sci. Technol., 85 (2022)
2295–2317.
- N. Khalid, M. Daud, Adsorption of arsenic from aqueous
media using lateritic minerals: equilibrium, kinetic and
thermodynamic studies, Radiochim. Acta, 102 (2014) 423–431.
- Z. Guo, D. Xu, D. Zhao, S. Zhang, J. Xu, Influence of Ph, ionic
strength, foreign ions and fa on adsorption of radiocobalt on
goethite, J. Radioanal. Nucl. Chem., 287 (2011) 505–512.