References
- D. Puyol, V.M. Monsalvo, S. Sanchis, J.L. Sanz, A.F. Mohedano,
J.J. Rodriguez, Comparison of bioaugmented EGSB and GAC–FBB reactors and their combination with aerobic SBR for the
abatement of chlorophenols, Chem. Eng. J., 259 (2015) 277–285.
- R.M. González Paredes, C. García Pinto, J.L. Pérez Pavón,
B. Moreno Cordero, In situ derivatization combined to automated
microextraction by packed sorbents for the determination of
chlorophenols in soil samples by gas chromatography mass
spectrometry, J. Chromatogr. A, 1359 (2014) 52–59.
- C. Fan, N. Li, X. Cao, Determination of chlorophenols in honey
samples using in-situ ionic liquid-dispersive liquid–liquid
microextraction as a pretreatment method followed by highperformance
liquid chromatography, Food Chem., 174 (2015)
446–451.
- R. Alizadeh, Chlorophenols ultra-trace analysis in
environmental samples by chitosan-zinc oxide nanorod
composite as a novel coating for solid phase microextraction
combined with high performance liquid chromatography,
Talanta, 146 (2016) 831–838.
- N. Fattahi, Y. Assadi, M.R.M. Hosseini, E.Z. Jahromi,
Determination of chlorophenols in water samples using
simultaneous dispersive liquid-liquid microextraction and
derivatization followed by gas chromatography-electroncapture
detection, J. Chromatogr. A, 1157 (2007) 23–29.
- J. Peng, J. Liu, X. Hu, G. Jiang, Direct determination of
chlorophenols in environmental water samples by hollow fiber
supported ionic liquid membrane extraction coupled with highperformance
liquid chromatography, J. Chromatogr. A, 1139
(2007) 165–170.
- J.I. Cacho, N. Campillo, P. Vinas, M. Hernandez-Cordoba, Stir
bar sorptive extraction polar coatings for the determination
of chlorophenols and chloroanisoles in wines using gas
chromatography and mass spectrometry, Talanta, 118 (2014)
30–36.
- R. Morales, L.A. Sarabia, M.S. Sánchez, M.C. Ortiz,
Experimental design for the optimization of the derivatization
reaction in determining chlorophenols and chloroanisoles by
headspace-solid-phase microextraction gas chromatography/mass spectrometry, J. Chromatogr. A, 1296 (2013) 179–195.
- A. Ribeiro, M.H. Neves, M.F. Almeida, A. Alves, L. Santos,
Direct determination of chlorophenols in landfill leachates
by solid-phase microextraction gas chromatography-mass
spectrometry, J. Chromatogr. A, 975 (2002) 267–274.
- Y. Chao, Y. Tu, Z. Jian, H. Wang, Y. Huang, Direct determination
of chlorophenols in water samples through ultrasound-assisted
hollow fiber liquid–liquid–liquid microextraction on-line
coupled with high performance liquid chromatography,
J. Chromatogr. A, 1271 (2013) 41–49.
- X. Li, A. Xue, H. Chen, S. Li, Low-density solvent-based
dispersive liquid–liquid microextraction combined with singledrop
microextraction for the fast determination of chlorophenols
in environmental water samples by high performance liquid
chromatography-ultraviolet detection, J. Chromatogr. A, 1280
(2013) 9–15.
- S. Pan, L. Zhou, Y. Zhao, X. Chen, H. Shen, Amine-functional
magnetic polymer modified graphene oxide as magnetic
solid-phase extraction materials combined with liquid
chromatography–tandem mass spectrometry for chlorophenols
analysis in environmental water, J. Chromatogr. A, 1362 (2014)
34–42.
- Y. Li, S. Zhang, C. Song, J. You, Determination of bisphenol A
and alkylphenols in soft drinks by high performance liquid
chromatography with fluorescence detection, Food Anal.
Methods, 6 (2013) 1284–1290.
- H. Heidari, H. Razmi, Multi-response optimization of
magnetic solid phase extraction based on carbon coated Fe3O4
nanoparticles using desirability function approach for the
determination of the organophosphorus pesticides in aquatic
samples by HPLC–UV, Talanta, 99 (2012) 13–21.
- D. Barreca, W.J. Blau, G.M. Croke, F.A. Deeney, F.C. Dillon, J.D.
Holmes, C. Kufazvinei, M.A. Morris, T.R. Spalding, E. Tondello,
Iron oxide nanoparticle impregnated mesoporous silica as
platforms for the growth of carbon nanotubes, Microporous
Mesoporous Mater., 103 (2007) 142–149.
- P. Wang, X. Wang, S. Yu, Y. Zou, J. Wang, Z. Chen, N.S. Alharbi,
A. Alsaedi, T. Hayat, Y. Chen, X. Wang, Silica coated Fe3O4
magnetic nanospheres for high removal of organic pollutants
from wastewater, Chem. Eng. J., 306 (2016) 280–288.
- D. Maity, D.C. Agrawal, Synthesis of iron oxide nanoparticles
under oxidizing environment and their stabilization in aqueous
and non-aqueous media, J. Magn. Magn. Mater., 308 (2007)
46–55.
- M.M. Rahman, S.B. Khan, A. Jamal, M. Faisal, A.M. Aisiri, Iron
oxide nanoparticles, Nanomaterials, 3 (2011) 43–67.
- X. Zhao, Y. Shi, T. Wang, Y. Cai, G. Jiang, Preparation of
silica-magnetite nanoparticle mixed hemimicelles sorbents
for extraction of several typical phenolic compounds from
environmental water samples, J. Chromatogr. A, 1188 (2008)
140–147.
- J. Shah, M.R. Jan, A.U. Haq, S. Jamil, Magnetic nanoparticles
impregnated low cost agriculture waste for removal of methyl
blue from aqueous solution, Toxicol. Environ. Chem., 96 (2014)
218–226.
- J. Shah, M.R. Jan, M. Zeeshan, M. Iqbal, Solid phase extraction
of 2,4-dichlorophenol from aqueous samples using magnetic
graphene nanocomposite, Sep. Sci. Technol., 51 (2016)
1480–1489.
- H.T.S. Britton, Hydrogen Ions, Monographs on Applied
Chemistry, John Wiley & Sons, Inc., New York, 1943, p. 313.
- K.C. Sadanala, B.C. Chung, Graphene nanoplates as a solid
phase extraction sorbent for analysis of chlorophenols in water,
J. Korean Soc. Appl. Biol. Chem., 56 (2013) 673–678.
- X.-L. Liu, C. Wang, Q.-H. Wu, Z. Wang, Preconcentration
of chlorophenols in water samples using three dimensional
graphene-based magnetic nanocomposite as absorbent, Chin.
Chem. Lett., 25 (2014) 1185–1189.
- X. Liu, J. Yin, L. Zhu, G. Zhao, H. Zhang, Evaluation of a
magnetic polysulfone microcapsule containing organic
modified montmorillonite as a novel solid-phase extraction
sorbent with chlorophenols as model compounds, Talanta, 85
(2011) 2451–2457.
- C. Wang, R. Ma, Q. Wu, M. Sun, Z. Wang, Magnetic porous
carbon as an adsorbent for the enrichment of chlorophenols
from water and peach juice samples, J. Chromatogr. A, 1361
(2014) 60–66.
- F. Yang, R. Shen, Y. Long, X. Sun, F. Tang, Q. Cai, S. Yao,
Magnetic microsphere confined ionic liquid as a novel sorbent
for the determination of chlorophenols in environmental water
samples by liquid chromatography, J. Environ. Monit., 13 (2012)
440–445.
- W. Ma, K.H. Row, Solid-phase extraction of chlorophenols
in sea water using a magnetic ionic liquid molecularly
imprinted polymer with incorporated silicon dioxide as a
sorbent, J. Chromatogr. A, (2018) 1–8. doi: doi.org/10.1016/j.
chroma.2018.01.013.