References
- B. Volesky, Detoxification of metal-bearing effluents: biosorption
for the next century, Hydrometallurgy, 59 (2001) 203–216.
- V. Hollriegl, M. Greiter, A. Giussani, U. Gerstmann, B. Michalke,
P. Roth, U. Oeh, Observation of changes in urinary excretion of
thorium in humans following ingestion of a therapeutic soil,
J. Environ. Radioact., 95 (2007) 149–160.
- H. Dolatyari, M. Yaftian, S. Rostamnia, Removal of uranium(VI)
ions from aqueous solutions using Schiff base functionalized
SBA-15 mesoporous silica materials, J. Environ. Manage.,
169 (2016) 8–17.
- Z. Talip, M. Eral, U. Hicsonmez, Sorption of thorium from
aqueous solutions by perlite, J. Environ. Radioact., 100 (2009)
139–143.
- S. Simsek, D. Baybas, M.C. Koçyigit, H. Yıldırım, Organoclay
modified with lignin as a new adsorbent for removal of Pb2+
and UO22+, J. Radioanal. Nucl. Chem., 299 (2014) 283–292.
- Z. Guo, X. Yu, F. Guo, Z. Tao, Th(IV) sorption on alumina:
effects of contact time, pH, ionic strength and phosphate,
J. Colloid Interface Sci., 288 (2014) 14–20.
- C. Kutahyali, M. Eral, Selective sorption of uranium from
aqueous solutions using activated carbon prepared from
charcoal by chemical activation, Sep. Purif. Technol., 40 (2004)
109–114.
- F. Khalili, N. Salameh, M. Shaybe, Sorption of uranium(VI)
and thorium(IV) by Jordanian bentonite, J. Chem., 2013 (2012)
1–14.
- F. Khalili, M. Al-Shaybe, Sorption of thorium(IV) and
uranium(VI) by Tulul al-Shabba Zeolitic Tuff, Jordan, Jordan
J. Earth Environ. Sci., 2 (2009) 108–119.
- A.A. Alqadami, M. Naushad, Z.A. Alothman, A.A. Ghfar,
Novel metal−organic framework (MOF) based composite
material for the sequestration of U(VI) and Th(IV) metal ions
from aqueous environment, ACS Appl. Mater. Interfaces,
9 (2017) 36026–36037.
- T.K. Barik, B. Sahu, V. Swain, Silica nanoparticles-from medicine
to pest control, Parasitol. Res., 103 (2008) 253–258.
- R. Subbiah, M. Veerapandian, K.S. Yun, Nanoparticles:
functionalization and multifunctional applications in biomedical
sciences, Curr. Med. Chem., 17 (2010) 4559–4577.
- C. Mathe, S. Devineau, J. Aude, G. Lagniel, C. Chedin, V. Legros,
M. Mathon, Structural determinants for protein sorption/nonsorption to silica surface, PLoS One 8 (2013) 81346.
- N.S. Nam, D.N. Khang, L.Q. Tuan, L.T. Son, Surface modification
of silica nanoparticles by hexamethyldisilazane and n-butanol,
Int. J. Environ. Technol. Sci., 2 (2016) 31–37.
- C.E. Ashley, E.C. Carnes, G.K. Phillips, D. Padilla, P.N. Durfee,
P.A. Brown, T.N. Hanna, J. Liu, B. Phillips, M.B. Carter,
The targeted delivery of multicomponent cargos to cancer
cells by nanoporous particle-supported lipid bilayers, Nat.
Mater.,10 (2011) 389–397.
- D. Tarn, C.E. Ashley, M. Xue, E.C. Carnes, J.I. Zink, C.J. Brinker,
Mesoporous silica nanoparticle nanocarriers: biofunctionality
and biocompatibility, Acc. Chem. Res., 46 (2013) 792–801.
- S.V. Patwardhan, F.S. Emami, R.J. Berry, S.E. Jones, R.R. Naik,
O. Deschaume, H. Heinz, C.C. Perry, Chemistry of aqueous
silica nanoparticle surfaces and the mechanism of selective
peptide sorption, J. Am. Chem. Soc., 134 (2012) 6244–6256.
- D.S. Grzegorczyk, G. Carta, Sorption of amino acids on porous
polymeric adsorbents—II. Intraparticle mass transfer, Chem.
Eng. Sci., 51 (1996) 819–826.
- J. Ikahsan, B.B. Johnson, J.D. Wells, M.J. Angove, Sorption of
aspartic acid on kaolinite, J. Colloid Interface Sci., 273 (2004)
1–5.
- A. Vinu, K.Z. Hossain, G.S. Kumar, K. Ariga, Adsorption of
L-histidine over mesoporous carbon molecular sieves, Carbon,
44 (2006) 530–536.
- J.E. Krohn, M. Tsapatsis, Amino acid sorption on zeolite beta,
Langmuir, 21 (2005) 8743–8750.
- H. Faghihian, M. Nejati-Yazdinejad, Equilibrium study of
sorption of L-cysteine by natural bentonite, Clay Miner.,
44 (2009) 125–133.
- D.M. Townsend, K.D. Tew, H. Tapiero, Sulfur containing amino
acids and human disease, Biomed. Pharmacother., 58 (2004)
47–55.
- M.L. Conte, U. Jakob, D. Reichmann, Oxidative Stress and
Redox Regulation, Springer, USA, 2013.
- J.F. Lambert, Sorption and polymerization of amino acids
on mineral surfaces: a review, Origins Life Evol. Biosphere,
38 (2008) 211–242.
- E. Doi, D. Shibata, T. Matoba, Modified calorimetric ninhydrin
methods for peptidase assay, Anal. Biochem., 118 (1981)
173–184.
- A.H. Orabi, Determination of uranium after separation using
solvent extraction from slightly nitric acid solution and
spectrophotometric detection, J. Radiat. Res. Appl. Sci. 6 (2013)
1–10.
- S. Azizian, Kinetic models of sorption: a theoretical analysis,
J. Colloid Interface Sci., 276 (2004) 47–52.
- I. Langmuir, The sorption of gases on plane surfaces of glass,
mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
- H. Freundlich, Over the sorption in solution, J. Phys. Chem.,
57 (1906) 385–470.
- M.M. Dubinin, L.V. Radushkevich, Equation of the characteristic
curve of activated charcoal, Chem. Zentralbl., 1 (1947) 875–890.
- F. Fan, D. Pan, H. Wu, H. Zhang, W. Wu, Succinamic acid
grafted nano silica for the preconcentration of U(VI) from
aqueous solution, Ind. Eng. Chem. Res., 56 (2017) 2221–2228.
- A. Khataee, A. Movafeghi, F. Nazari, F. Vafaei, M. Dadpour,
Y. Hanifehpour, S. Joo, The toxic effects of L-cysteine-capped
cadmium sulfide nanoparticles on the aquatic plant Spirodela
polyrrhiza, J. Nanopart. Res., 16 (2014) 2774–2784.
- S.F. Parker, Assignment of the vibrational spectrum of
L-cysteine, Chem. Phys., 424 (2013) 75–79.
- M. Wolpert, P. Hellwig, Infrared spectra and molar absorption
coefficients of the 20 alpha amino acids in aqueous solutions in
the spectral range from 1800 to 500 cm−1, Spectrochim. Acta, Part
A, 64 (2006) 987–1001.
- V. Jafari, A. Allahverdi, Synthesis and characterization of
colloidal silica nanoparticles via an ultrasound assisted
route based on alkali leaching of silica fume, Int. J. Nanosci.
Nanotechnol., 10 (2014) 145–152.
- H. Chen, H. Bian, J. Li, X. Guo, X. Wen, J. Zheng, Molecular
conformations of crystalline L‑cysteine determined with
vibrational cross angle measurements, J. Phys. Chem. B,
117 (2013) 15614−15624.
- J. Hautala, S. Airaksinen, N. Naukkarinen, O. Vainio, A. Juppo,
Evaluation of new flavors for feline mini-tablet formulations,
J. Excipients Food Chem., 5 (2014) 80–100.
- I. Dakova, P. Vasileva, I. Karadjova, Cysteine modified silica
submicrospheres as a new sorbent for preconcentration of
Cd(II) and Pb(II), Bulg. Chem. Commun., 43 (2011) 210–216.
- K. Kim, H. Kim, W. Lee, C. Lee, T. Kim, J. Lee, J. Jeong, S. Paek,
J. Oh, Surface treatment of silica nanoparticles for stable and
charge-controlled colloidal silica, Int. J. Nanomed., 9 (2014)
29–40.
- M. Du, Y. Zheng, Modification of silica nanoparticles and their
application in UDMA dental polymeric composites, Polym.
Compos., 28 (2007) 198–207.
- S. Sompech, T. Dasri, S. Thaomola, Preparation and characterization
of amorphous silica and calcium oxide from
agricultural wastes, Orient. J.Chem., 32 (2016) 1923–1928.
- A. Fuad, N. Mufti, M. Diantoro, K.S. Septa, Synthesis and
characterization of highly purified silica nanoparticles from
pyrophyllite ores, AIP Conf. Proc., 1719 (2016) 30020–30025.
- K. Sing, D.H. Everett, R.A.W. Haul, L. Moscou, R.A. Pierotti,
J. Rouquerol, T. Siemieniewska, Reporting physisorption data
for gas/solid systems with special reference to the determination
of surface area and porosity, Pure Appl. Chem., 57 (1985)
603–619.
- M. Chaves, K. Valsaraj, R. DeLaune, R. Gambrell, P. Buchler,
Mercury uptake by biogenic silica modified with L-cysteine,
Environ. Technol., 32 (2011) 1615–1625.
- J. Wu, G. Ma, P. Li, L. Ling, B. Wang, Surface modification of
silica nanoparticles with acrylsilane-containing tertiary amine
structure and their effect on the properties of UV-curable
coating, J. Coat. Technol. Res., 11 (2014) 387–395.
- N. Belachew, D. Rama Devi, K. Basavaiah, Facile green synthesis
of L-methionine capped magnetite nanoparticles for adsorption
of pollutant Rhodamine B, J. Mol. Liq., 224 (2016) 713–720.
- I.M. Weiss, C. Muth, R. Drumm, H. Kirchner, Thermal
decomposition of the amino acids glycine, cysteine, aspartic
acid, asparagine, glutamic acid, glutamine, arginine and
histidine, BMC Biophys., 11 (2018) 1–15.
- T. Fan, Y. Liu, B. Feng, G. Zeng, C. Yang, M. Zhou, H. Zhou,
X. Wang, Biosorption of cadmium(II), zinc(II) and lead(II)
by Penicillium simplicissimum: isotherms, kinetics and
thermodynamics, J. Hazard. Mater., 160 (2008) 655–661.
- M.W. Clark, J.J. Harrison, T.E. Payne, The pH-dependence and
reversibility of uranium and thorium binding on a modified
bauxite refinery residue using isotopic exchange techniques,
J. Colloid Interface Sci., 356 (2011) 699–705.
- F. Khalili, A. Khalifa, G. Al-Banna, Removal of uranium(VI)
and thorium(IV) by insolubilized humic acid originated from
Azraq soil in Jordan, J, Radioanal. Nucl. Chem., 311 (2017)
1375–1392.
- Y. Huang, Y. Hu, L. Chen, T. Yang, H. Huang, R. Shi, P. Lu,
C. Zhong, Selective biosorption of thorium(IV) from aqueous
solutions by ginkgo leaf, PLoS One, 13 (2018) 193659.
- Z. Naseem, H. Bhatti, S. Sadaf, S. Noreen, S. Ilyas, Sorption of
uranium(VI) by Trapa bispinosa from aqueous solution, effect
of pretreatments and modeling studies, Desal. Water Treat.,
57 (2016) 11121–11132.
- M. Ebrahimi-Gatkash, H.N. Younesi, A. Heidari, Amino-functionalized
mesoporous MCM-41 silica as an efficient adsorbent
for water treatment: batch and fixed-bed column sorption of the
nitrate anion, Appl. Water Sci.,7 (2015) 1887–1901.
- U.H. Kaynar, M. Ayvacıklı, U. Hiçsönmez, S.C. Kaynar,
Removal of thorium(IV) ions from aqueous solution by a novel
nanoporous ZnO: isotherms, kinetic and thermodynamic
studies, J. Environ. Radioact., 150 (2015) 145–151.
- S. Chegrouche, A. Mellah, M. Barkat, A. Aknoun, Kinetics and
isotherms for uranium(VI) sorption from aqueous solutions by
goethite, Am. J. Mater. Sci., 3 (2016) 6–12.
- R. Donat, A. Akdogan, E. Erdem, H. Cetisli, Thermodynamics
of Pb2+ and Ni2+ sorption onto natural bentonite from aqueous
solutions, J. Colloid Interface Sci., 286 (2005) 43–52.
- Z. Hongxia, D. Zheng, T. Zuyi, Sorption of thorium(IV)
ions on gibbsite: effects of contact time, pH, ionic strength,
concentration, phosphate and fulvic acid, Colloids Surf., A,
278 (2006) 46–52.
- D.L. Zhao, S.J. Feng, C.L. Chen, S.H. Chen, D. Xu, X.K. Wang,
Adsorption of thorium(IV) on MX-80 bentonite: effect of pH,
ionic strength and temperature, Appl. Clay Sci., 41 (2008) 17–23.
- C. Chen, X. Wang, Sorption of Th(IV) to silica as a function of
pH, humic/fulvic acid, ionic strength, electrolyte type, Appl.
Radiat. Isot., 65 (2007) 155–163.
- E. Prasetyo, K. Toyoda, Sol–gel synthesis of a humic acid-silica
gel composite material as low-cost adsorbent for thorium and
uranium removal, J. Radioanal. Nucl. Chem., 310 (2016) 69–80.
- L. Xia, K. Tan, X. Wang, W. Zheng, W. Liu, C. Deng, Uranium
removal from aqueous solution by banyanleaves: equilibrium,
thermodynamic, kinetic and mechanism studies, J. Environ.
Eng., 139 (2013) 887–895.
- F. Khalili, G. Al-Banna, Sorption of uranium(VI) and
thorium(IV) by insolubilized humic acid from Ajloun soil –
Jordan, J. Environ. Radioact., 146 (2015) 16–26.
- C. Liu, X. Liang, J. Liu, W. Yuan, Desorption of copper ions
from the polyamine functionalized adsorbents: behaviors and
mechanisms, Adsorpt. Sci. Technol., 34 (2016) 455–468.