References
- Z. Qianli, F. Yang, F. Tang, K. Zeng, K. Wu, Q. Cai, S. Yao, Ionic
liquid-coated Fe3O4 magnetic nanoparticles as an adsorbent of
mixed hemimicelles solid-phase extraction for preconcentration
of polycyclic aromatic hydrocarbons in environmental samples,
Analyst, 135 (2010) 2426–2433.
- W. Eranda, S. Perera, J.A. Crank, L. Sidisky, R. Shirey, A. Berthod,
D.W. Armstrong, Bonded ionic liquid polymeric material for
solid-phase microextraction GC analysis, Anal. Bioanal. Chem.,
396 (2010) 511–524.
- X. Liu, X. Lu, Y. Huang, C. Liu, S. Zhao, Fe3O4@ ionic liquid@
methyl orange nanoparticles as a novel nano-adsorbent
for magnetic solid-phase extraction of polycyclic aromatic
hydrocarbons in environmental water samples, Talanta, 119
(2014) 341–347.
- Z. Weifeng, T. Yusheng, X. Jia, K. Jie, Functionalized graphene
sheets with poly (ionic liquid)s and high adsorption capacity of
anionic dyes, Appl. Surf. Sci., 326 (2015) 276–284.
- M. Sprynskyy, T. Kowalkowski, H. Tutu, E.M. Cukrowska, B.
Buszewski, Ionic liquid modified diatomite as a new effective
adsorbent for uranium ions removal from aqueous solution,
Colloids Surf., A, 465 (2015) 159–167.
- M. Amde, J.F. Liu, L. Pang, Environmental application, fate,
effects, and concerns of ionic liquids, Environ. Sci. Technol., 49
(2015) 12611–12627.
- M.M. Abolghasemi, B. Karimi, V. Yousefi, Periodic
mesoporous organosilica with ionic liquid framework as a
novel fiber coating for headspace solid-phase microextraction
of polycyclic aromatic hydrocarbons, Anal. Chim. Acta, 804
(2013) 280–286.
- B. Karimi, D. Enders, New N-heterocyclic carbene palladium
complex/ionic liquid matrix immobilized on silica: application
as recoverable catalyst for the Heck reaction, Org. Lett., 8 (2006)
1237–1240.
- Q. Tao, J. Yuan, R.L. Frost, H. Hongping, P. Yuan, J. Zhu, Effect
of surfactant concentration on the stacking modes of organosilylated
layered double hydroxides, Appl. Clay Sci., 45 (2009)
262–269.
- C. Domingo, E. Loste, J. Fraile, Calcite precipitation by a highpressure
CO2 carbonation route, J. Supercrit. Fluids, 36 (2006)
202–215.
- K.W. Park, S.Y. Jeong, O.Y. Kwon, Interlamellar silylation of
H-kenyaite with 3-aminopropyltriethoxysilane, Appl. Clay Sci.,
27 (2004) 21–27.
- S.K. Bharqava, B.D. Akolekar, Adsorption of NO and CO over
transition-metal-incorporated mesoporous catalytic materials,
J. Colloid Interface Sci., 281 (2005) 171–178.
- M.M. Abolghasemi, V. Yousefi, M. Piryaei, Double-charged ionic
liquid-functionalized layered double hydroxide nanomaterial
as a new fiber coating for solid-phase microextraction of
phenols, Microchim. Acta, 182 (2015) 2155–2164.
- P. Zhang, G. Qian, Z.P. Xu, H. Shi, X. Ruan, J. Yang, R.L.
Frost, Effective adsorption of sodium dodecylsulfate (SDS) by
hydrocalumite (CaAl-LDH-Cl) induced by self-dissolution and
re-precipitation mechanism, J. Colloid. Interface Sci., 367 (2012)
264–271.
- E.M. Seftel, M. Niarchos, C. Mitropoulos, M. Mertens, E.F.
Vansant, P. Cool, Photocatalytic removal of phenol and
methylene-blue in aqueous media using TiO2@ LDH clay
nanocomposites, Catal. Today, 252 (2015) 120–127.
- A. Asfaram, M. Ghaedi, S. Agarwal, I. Tyagi, V. Kumar Gupta,
Removal of basic dye Auramine-O by ZnS: Cu nanoparticles
loaded on activated carbon: optimization of parameters using
response surface methodology with central composite design,
RSC Adv., 5 (2015) 18438–18450.
- Q. Peng, M. Liu, J. Zheng, C. Zhou, Adsorption of dyes in aqueous
solutions by chitosan–halloysite nanotubes composite hydrogel
beads, Microporous Mesoporous Mater., 201 (2015) 190–201.
- R. Lafi, A. Hafiane, Removal of methyl orange (MO) from
aqueous solution using cationic surfactants modified coffee
waste (MCWs), J. Taiwan Inst. Chem. Eng., 58 (2016) 424–433.
- Y. Liu, C. Luo, J. Sun, H. Li, Z. Sun, S. Yan, Enhanced
adsorption removal of methyl orange from aqueous solution by
nanostructured proton-containing δ-MnO2, J. Mater. Chem. A, 3
(2015) 5674–5682.
- E. Haque, J.E. Lee, I.T. Jang, Y.K. Hwang, J.S. Chang, J. Jegal,
S.H. Jhung, Adsorptive removal of methyl orange from aqueous
solution with metal-organic frameworks, porous chromiumbenzenedicarboxylates,
J. Hazard. Mater., 181 (2010) 535–542.
- Z.M. Ni, S.J. Xia, L.G. Wang, F.F. Xing, G.X. Pan, Treatment
of methyl orange by calcined layered double hydroxides in
aqueous solution: adsorption property and kinetic studies, J.
Colloid Interface Sci., 316 (2007) 284–291.
- H.Y. Zhu, R. Jiang, L. Xiao, G.M. Zeng, Preparation, characterization,
adsorption kinetics and thermodynamics of novel magnetic
chitosan enwrapping nanosized γ-Fe2O3 and multi-walled carbon
nanotubes with enhanced adsorption properties for methyl
orange, Bioresour. Technol., 101 (2010) 5063–5069.
- J.H. Huang, K.L. Huang, S.Q. Liu, A.T. Wang, C. Yan, Adsorption
of Rhodamine B and methyl orange on a hypercrosslinked
polymeric adsorbent in aqueous solution, Colloids Surf. A, 330
(2008) 55–61.
- M.H. Do, N.H. Phan, T.D. Nguyen, T.T. Pham, V.K. Nguyen,
T.T. Vu, T.K. Nguyen, Activated carbon/Fe3O4 nanoparticle
composite: fabrication, methyl orange removal and regeneration
by hydrogen peroxide, Chemosphere, 85 (2011) 1269–1276.