References
- H.A. Alhmoud, The effect of surfactant above and below the
critical micelle concentration (CMC) and the mathematical
models used to determine the kinetics of drug release from the
matrix system, Afr. J. Pharm. Pharmacol., 8 (2016) 88–94.
- L.M. Bergström, T. Bramer, Synergistic effects in mixtures
of oppositely charged surfactants as calculated from the
poisson-boltzmann theory: a comparison between theoretical
predictions and experiments, J. Colloid Interface Sci., 2 (2008)
589–595.
- Y.S. Chen, B.S. Wang, Application of midpoint quaternary
sampling technique in tropical mountain rainforest, Chin. J.
Eco Sci., 1 (1994) 56–62.
- Q. Chi, W. Göpel, T. Ruzgas, L. Gorton, P. Heiduschka, Effects
of pretreatments and modifiers on electrochemical properties of
carbon paste electrodes, Electroanalysis, 5 (2010) 357–365.
- X. Ding, Q. Liu, X. Hou, T. Fang, Supercritical fluid extraction
of metal chelate: a review, CRC Crit. Rev. Anal. Chem., 2 (2017)
99–118.
- B.E. Erenoglu, H.K. Patra, H. Khodr, V. Römheld, W.N. Von,
Uptake and apoplastic retention of edta- and phytosiderophorechelated
chromium(III) in maize, J. Soil Sci. Plant Nutr., 6 (2010)
788–795.
- G.T. Patle, T.T. Sikar, K.S. Rawat, S.K. Singh, Estimation of
infiltration rate from soil properties using regression model for
cultivated land, Geol. Ecol. Landscapes, 3 (2019) 1–13.
- T.D.T. Oyedotun, L. Johnson-Bhola, Beach litter and grading of
the coastal landscape for tourism development in sections of
Guyana’s Coast, J. Clean WAS, 3 (2019) 01–09.
- N.L.S. Len, N. Bolong, R. Roslee, F. Tongkul, A.K. Mirasa,
J.L. Ayog, Flood vulnerability of critical infrastructures - review,
Malaysian J. Geosci., 2 (2018) 34–37.
- I. Syafiqah, H.W. Yussof, The use of factorial design for analysis
of mercury removal efficiency using palm oil fuel ash, Water
Conserv. Manage., 2 (2018) 10–12.
- M. Elmnifi, M. Amhamed, N. Abdelwanis, O. Imrayed, Wasteto-
energy potential in Tripoli City-Libya, Environ. Ecosyst. Sci.,
2 (2018) 01–03.
- O. Estrada, I.D. Lopez, A. Hernandez, J.C. Ortiz, Energy gap
method (EGM) to increase energy efficiency in industrial
processes: successful cases in polymer processing, J. Cleaner
Prod., 176 (2018) 7–25.
- M. Ezoddin, F. Shemirani, R. Khani, Application of mixedmicelle
cloud point extraction for speciation analysis of
chromium in water samples by electrothermal atomic absorption
spectrometry, Desalination, 262 (2010) 183–187.
- K.M. Fang, J.R. Chen, L.J. Wu, Determination of trace aluminum
in water samples by graphite furnace atomic absorption spectrometry
with cloud point extraction, Anal. Lab., 4 (2008) 63–65.
- M. Gledhill, K.N. Buck, The organic complexation of iron in the
marine environment: a review, Front. Microbiol., 3 (2012) 69.
- P. Hemmatkhah, A. Bidari, S. Jafarvand, M.R.M. Hosseini,
Y. Assadi, Speciation of chromium in water samples using
dispersive liquid-liquid microextraction and flame atomic
absorption spectrometry, Microchim. Acta, 166 (2009) 69–75.
- P. Irungbam, M. Pramanick, T.S. Devi, Growth and productivity
of potato (cv. Kufri jyoti) and soil nutrient status as influenced
by different nutrient management in new alluvial zone of West
Bengal, J. Environ. Biol., 39 (2018) 17–22.
- Ç. Kartal, H. Akbaş, Study on the interaction of anionic dyenonionic
surfactants in a mixture of anionic and nonionic
surfactants by absorption spectroscopy, Dyes Pigm., 65 (2005)
191–195.
- H.X. Li, W.Y. Wang, G.J. Xu, Q. Xu, F. Zhang, C.S. Liu, Heavy
metal measurement in leeches with inductively coupled plasma
mass spectrometry, J. Beijing Univ. J. Tradit. Chin. Med.,
40 (2017) 498–502.
- Z.C. Li, L. Mao, X.Z. Zhang, Valence variation of chromium in
the chemical speciation analysis and prediction models for the
available chromium in slag with chromium, J. Saf. Environ.,
17 (2017) 1996–2000.
- P. Liang, H. Sang, Speciation of chromium in water samples
with cloud point extraction separation and preconcentration
and determination by graphite furnace atomic absorption
spectrometry, J. Hazard. Mater., 154 (2008) 1115–1119.
- L. Macháčková, M. Žemberyová, Cloud point extraction for
preconcentration of trace beryllium and chromium in water
samples prior to electrothermal atomic absorption spectrometry,
Anal. Methods, 4 (2012) 4042–4048.
- N.N. Meeravali, S.J. Jiang, A novel cloud point extraction
approach using cationic surfactant for the separation and preconcentration
of chromium species in natural water prior to
ICP-DRC-MS determination, Talanta, 80 (2009) 173–178.
- C. Moon, Y. Ahn, T. Lee, Y. Hwang, Importance of microbial
adaptation for concentrate management in wastewater reuse
process, Energy Environ., 30 (2019) 719–731.
- M. Mushtaq, I.M. Tan, L. Ismail, S.Y.C. Lee, M. Nadeem,
M. Sagir, Oleate ester-derived nonionic surfactants: Synthesis
and cloud point behavior studies, J. Dispersion Sci. Technol.,
35 (2014) 322–328.
- National Quality and Technical Supervision, The People’s
Republic of China National Standard GB 17378.2–2007 Marine
Monitoring Specifications, Part 2: Data Processing and Analysis
of Quality Control, 2007.
- E.S.A. Nouh, Micelle mediated extraction for preconcentration
of Eu(III) prior to determination by flame atomic absorption
spectrometry, J. Ind. Eng. Chem., 24 (2015) 87–91.
- B. Novotnik, J, Ščančar, R. Milačič, Cytotoxic and genotoxic
potential of Cr(VI), Cr(III)-nitrate and Cr(III)-EDTA complex
in human hepatoma (HepG2) cells, Chemosphere, 154 (2016)
124–131.
- A.S. Oyekale, Cocoa farmers’ safety perception and compliance
with precautions in the use of pesticides in centre and western
Cameroon, Appl. Ecol. Environ. Res., 15 (2017) 205–219.
- E.K. Paleologos, Chapter 12 – Surfactant-Mediated Extraction
Techniques, F. Pena-Pereira, M. Tobiszewski, Eds., The
Application of Green Solvents in Separation Processes, Elsevier,
2017, pp. 349–375.
- N. Papassiopi, A. Kontoyianni, K. Vaxevanidou, A. Xenidis,
Assessment of chromium biostabilization in contaminated soils
using standard leaching and sequential extraction techniques,
Sci. Total Environ., 407 (2009) 925–936.
- M.A. Rub, A.O. Al-Youbi, A.M. Asiri, A. Khan, A.A.P. Khan,
N. Azum, Influence of additives (inorganic/organic) on the
clouding behavior of amphiphilic drug solutions: some
thermodynamic studies, J. Saudi Chem. Soc., 19 (2015) 292–300.
- S. Sadeghi, M.A. Zeraatkar, Preconcentration and speciation
of trace amounts of chromium in saline samples using
temperature-controlled microextraction based on ionic liquid
as extraction solvent and determination by electrothermal
atomic absorption spectrometry, Talanta, 99 (2012) 758–766.
- Y. Toya, T. Itagaki, K. Wagatsuma, Correlation between the gas
temperature and the atomization behavior of analyte elements
in flame atomic absorption spectrometry estimated with a
continuum-light-source spectrometer system, Spectrochim.
Acta, Part B, 125 (2016) 146–151.
- L.L. Wang, J.Q. Wang, Z.X. Zheng, P. Xiao, Cloud point extraction
combined with high-performance liquid chromatography
for speciation of chromium(III) and chromium(VI) in
environmental sediment samples, J. Hazard. Mater., 177 (2010)
114–118.
- B.J. Wei, X.X. Zeng, H.Y. Jiang, Analysis of accuracy of cadmium
detected by flame and graphite furnace atomic absorption
spectrometry, J. Hunan Univ. Technol., 27 (2013) 16–19.
- H.N. Xu, Altering phase separation in aqueous nonionic
surfactant solutions by power ultrasound, J. Solution Chem.,
42 (2013) 1229–1237.
- A.C. Zamora Figueroa, J.R. Ramos Oropeza, M. Arias,
I. Hernandez Valencia, Response of the microbial community
to the biotreatment of a soil contaminated with a medium
crude, Rev. Int. Contam. Ambiental, 33 (2017) 629–639.
- M. Arora, B. Kiran, S. Rani, A. Rani, B. Kaur, N. Mittal, Heavy
metal accumulation in vegetables irrigated with water from
different sources, Food Chem., 111 (2008) 811–815.
- L. Zhang, X. Li, X. Wang, W. Wang, X. Wang, H. Han,
Preconcentration and determination of chromium species by
cloud point extraction-flame atomic absorption spectrometry,
Anal. Methods, 6 (2014) 5578–5583.
- Q. Zhang, W.S. Chen, C.J. Jin, Detection of heavy metal residues
in dry chilies by means of atomic absorption spectroscopy and
atomic fluorescence spectrometry, Chin. J. Anal. Lab., 32 (2013)
97–100.
- X.Z. Zhao, L.L. Zhang, Y.X. Cheng, Existing problems and
countermeasures of elemental analysis method standard
in “Surface Water Environmental Quality Standard,” Chin.
Environ. Monit., 30 (2014) 188–192.
- Y.Z. Zhong, Wang, Z.H. Zhang, Determination of trace copper
in environmental water by cloud point extraction-flame atomic
absorption spectrometry, J. Environ. Health, 33 (2016) 63–66.