References
- S.F. de Aquino, E.M.F. Brandt, C.A. de L. Chernicharo,
Remoção de fármacos e desreguladores endócrinos em estações
de tratamento de esgoto: Revisão da literatura, Eng. Sanit. e
Ambient., 18 (2013) 187–204.
- G.P. Pessoa, N.C. de Souza, C.B. Vidal, J.A.C. Alves,
P.I.M. Firmino, R.F. Nascimento, A.B. dos Santos, Occurrence
and removal of estrogens in Brazilian wastewater treatment
plants, Sci. Total Environ., 490 (2014) 288–295.
- W.A. Evans, P.J. Davies, C. McRae, The occurrence of methyl,
ethyl, propyl, and butyl parabens in the urban rivers and
stormwaters of Sydney, Australia, Environ. Sci. Water Res.
Technol., 2 (2016) 733–742.
- S.D. Richardson, T.A. Ternes, Water analysis: emerging
contaminants and current issues, Anal. Chem., 90 (2018) 398–428.
- C.B. Vidal, M. Seredych, E. Rodríguez-Castellón,
R.F. Nascimento, T.J. Bandosz, Effect of nanoporous carbon
surface chemistry on the removal of endocrine disruptors
from water phase, J. Colloid Interface Sci., 449 (2015) 180–191.
- C.B. Vidal, A.B. dos Santos, R.F. do Nascimento, T.J. Bandosz,
Reactive adsorption of pharmaceuticals on tin oxide pillared
montmorillonite: effect of visible light exposure, Chem. Eng. J.,
259 (2015) 865–875.
- F.A. Andersen, Final report on the safety assessment of
isobutylparaben and isopropylparaben, J. Am. Coll. Toxicol.,
14 (1995) 364–372.
- M. Borremans, J. Van Loco, P. Roos, L. Goeyens, Validation of
HPLC analysis of 2-phenoxyethanol, 1-phenoxypropan-2-ol,
methyl, ethyl, propyl, butyl and benzyl 4-hydroxybenzoate
(parabens) in cosmetic products, with emphasis on decision
limit and detection capability, Chromatographia, 59 (2004)
47–53.
- M.G. Soni, I.G. Carabin, G.A. Burdock, Safety assessment
of esters of p-hydroxybenzoic acid (parabens), Food Chem.
Toxicol., 43 (2005) 985–1015.
- C. Radovan, D. Cinghiţaˇ, F. Manea, M. Mincea, C. Cofan,
V. Ostafe, Electrochemical sensing and assessment of parabens
in hydro-alcoholic solutions and water using a boron-doped
diamond electrode, Sensors, 8 (2008) 4330–4349.
- R.S. Tavares, F.C. Martins, P.J. Oliveira, J. Ramalho-Santos, F.P. Peixoto, Parabens in male infertility-Is there a
mitochondrial connection?, Reprod. Toxicol., 27 (2009) 1–7.
- W. Li, L. Gao, Y. Shi, Y. Wang, J. Liu, Y. Cai, Spatial distribution,
temporal variation and risks of parabens and their chlorinated
derivatives in urban surface water in Beijing, China, Sci. Total
Environ., 539 (2016) 262–270.
- J.A. Ocaña-González, M. Villar-Navarro, M. Ramos-Payán,
R. Fernández-Torres, M.A. Bello-López, New developments
in the extraction and determination of parabens in cosmetics
and environmental samples. A review, Anal. Chim. Acta,
858 (2015) 1–15.
- P.D. Darbre, A. Aljarrah, W.R. Miller, N.G. Coldham,
M.J. Sauer, G.S. Pope, Concentrations of parabens in human
breast tumours, J. Appl. Toxicol., 24 (2004) 5–13.
- A.M. Aker, D.J. Watkins, L.E. Johns, K.K. Ferguson, O.P. Soldin,
L.V. Anzalota Del Toro, A.N. Alshawabkeh, J.F. Cordero,
J.D. Meeker, Phenols and parabens in relation to reproductive
and thyroid hormones in pregnant women, Environ. Res.,
151 (2016) 30–37.
- H. Zhu, K. Kannan, Parabens in stretch mark creams: a source
of exposure in pregnant and lactating women, Sci. Total
Environ., 744 (2020) 141016, doi: 10.1016/j.scitotenv.2020.
141016.
- J. Boberg, C. Taxvig, S. Christiansen, U. Hass, Possible
endocrine disrupting effects of parabens and their metabolites,
Reprod. Toxicol., 30 (2010) 301–312.
- S. Shirai, Y. Suzuki, J. Yoshinaga, H. Shiraishi, Y. Mizumoto,
Urinary excretion of parabens in pregnant Japanese women,
Reprod. Toxicol., 35 (2013) 96–101.
- J. Chen, K.C. Ahn, N.A. Gee, S.J. Gee, B.D. Hammock,
B.L. Lasley, Antiandrogenic properties of parabens and other
phenolic containing small molecules in personal care products,
Toxicol. Appl. Pharmacol., 221 (2007) 278–284.
- T. Wu, C. Wang, X. Wang, Q. Ma, Simultaneous determination
of 21 preservatives in cosmetics by ultra performance
liquid chromatography, Int. J. Cosmet. Sci., 30 (2008) 367–372.
- M. Schlumpf, K. Kypke, M. Wittassek, J. Angerer, H. Mascher,
D. Mascher, C. Vökt, M. Birchler, W. Lichtensteiger, Exposure
patterns of UV filters, fragrances, parabens, phthalates,
organochlor pesticides, PBDEs, and PCBs in human milk:
correlation of UV filters with use of cosmetics, Chemosphere,
81 (2010) 1171–1183.
- L. Wang, C. Liao, F. Liu, Q. Wu, Y. Guo, H.B. Moon,
H. Nakata, K. Kannan, Occurrence and human exposure of
p-hydroxybenzoic acid esters (parabens), bisphenol a diglycidyl
ether (BADGE), and their hydrolysis products in indoor
dust from the United States and three east Asian countries,
Environ. Sci. Technol., 46 (2012) 11584–11593.
- C. Li, X. Cui, Y. Chen, C. Liao, Paraben concentrations in human
fingernail and its association with personal care product use,
Ecotoxicol. Environ. Saf., 202 (2020) 110933, doi: 10.1016/j.
ecoenv.2020.110933.
- J. Gasperi, D. Geara, C. Lorgeoux, A. Bressy, S. Zedek, V. Rocher,
A. El Samrani, G. Chebbo, R. Moilleron, First assessment of
triclosan, triclocarban and paraben mass loads at a very large
regional scale: case of Paris conurbation (France), Sci. Total
Environ., 493 (2014) 854–861.
- C.A. Galinaro, F.M. Pereira, E.M. Vieira, Determination of
parabens in surface water from Mogi Guaçu River (São paulo,
Brazil) using dispersive liquid–liquid microextraction based on
low density solvent and LC-DAD, J. Braz. Chem. Soc., 26 (2015)
2205–2213.
- C.B. Vidal, P.G.A. Barbosa, G.P. Pessoa, R.M. Cavalcante,
R.F. Nascimento, Multiresidue determination of endocrine
disrupting compounds in sewage treatment plants (SPEHPLC-DAD), J. Braz. Chem. Soc., 31 (2020) 1–13, doi:
10.21577/0103-5053.20200127.
- C. Haman, X. Dauchy, C. Rosin, J.F. Munoz, Occurrence, fate
and behavior of parabens in aquatic environments: a review,
Water Res., 68 (2015) 1–11.
- N. Paxéus, Organic pollutants in the effluents of large
wastewater treatment plants in Sweden, Water Res., 30 (1996)
1115–1122.
- N. Jonkers, A. Sousa, S. Galante-Oliveira, C.M. Barroso,
H.P.E. Kohler, W. Giger, Occurrence and sources of selected
phenolic endocrine disruptors in Ria de Aveiro, Portugal,
Environ. Sci. Pollut. Res., 17 (2010) 834–843.
- E. Carmona, V. Andreu, Y. Picó, Occurrence of acidic
pharmaceuticals and personal care products in Turia River
Basin: from waste to drinking water, Sci. Total Environ.,
484 (2014) 53–63.
- Y.L. Wei, L.J. Bao, C.C. Wu, E.Y. Zeng, Characterization of
anthropogenic impacts in a large urban center by examining
the spatial distribution of halogenated flame retardants,
Environ. Pollut., 215 (2016) 187–194.
- M.A.K. Silveira, S.S. Caldas, J.R. Guilherme, F.P. Costa,
B.D.S. Guimarães, M.B.R. Cerqueira, B.M. Soares, E.G. Primel,
Quantification of pharmaceuticals and personal care product
residues in surface and drinking water samples by SPE and
LC-ESI-MS/MS, J. Braz. Chem. Soc., 24 (2013) 1385–1395.
- M.F. Luizete, Parabenos em água superficial: estudo analítico
e aplicação em amostras ambientais, Master’s Thesis,
Universidade Estadual Paulista, São Paulo, Brazil, 2013.
- F.F. Sodré, P.M. Dutra, V.P. Dos Santos, Pharmaceuticals and
personal care products as emerging micropollutants in Brazilian
surface waters: a preliminary snapshot on environmental
contamination and risks, Eclet. Quim., 43 (2018) 22–34.
- M.M. dos Santos, F. de A. Brehm, T.C. Filippe, H.G. Knapik,
J.C.R. de Azevedo, Occurrence and risk assessment of parabens
and triclosan in surface waters of southern Brazil: a problem of
emerging compounds in an emerging country, Rbrh, 21 (2016)
603–617.
- C. Coelho, B. Heim, S. Foerster, A. Brosinsky, J.C. de Araújo,
In situ and satellite observation of CDOM and chlorophyll-a
dynamics in small water surface reservoirs in the Brazilian
semiarid region, Water (Switzerland), 9 (2017), doi: 10.3390/
w9120913.
- M.A.S. Cruz, A. de A. Gonçalves, R. de Aragão, J.R.A. de
Amorim, P.V.M. da Mota, V.S. Srinivasan, C.A.B. Garcia,
E.E. de Figueiredo, Spatial and seasonal variability of the
water quality characteristics of a river in Northeast Brazil,
Environ. Earth Sci., 78 (2019), doi: 10.1007/s12665-019-8087-5.
- J. Xu, B. Chen, M. He, B. Hu, Analysis of preservatives with
different polarities in beverage samples by dual-phase dual
stir bar sorptive extraction combined with high-performance
liquid chromatography, J. Chromatogr. A, 1278 (2013)
8–15.
- L. Núñez, J.L. Tadeo, A.I. García-Valcárcel, E. Turiel,
Determination of parabens in environmental solid samples
by ultrasonic-assisted extraction and liquid chromatography
with triple quadrupole mass spectrometry, J. Chromatogr. A,
1214 (2008) 178–182.
- H. Shaaban, A. Mostafa, W. Alhajri, L. Almubarak, K.
AlKhalifah, Development and validation of an eco-friendly
SPE-HPLC-MS method for simultaneous determination of
selected parabens and bisphenol A in personal care products:
evaluation of the greenness profile of the developed method, J.
Liq. Chromatogr. Related Technol., 41 (2018) 621–628.
- C.B. Vidal, A.V. Feitosa, G.P. Pessoa, G.S.C. Raulino,
A.G. Oliveira, A.B. dos Santos, R.F. Nascimento, Polymeric
and silica sorbents on endocrine disruptors determination,
Desal. Water Treat., 54 (2015) 156–165.
- P.M.C. Buarque, R.B.P. de Lima, C.B. Vidal, H.L. de B. Buarque,
P.I.M. Firmino, A.B. dos Santos, Enhanced removal of emerging
micropollutants by applying microaeration to an anaerobic
reactor, Eng. Sanit. Ambient., 24 (2019) 667–673.
- A.V. Herrera-Herrera, M. Asensio-Ramos, J. Hernández-
Borges, M.Á. Rodríguez-Delgado, Dispersive liquid–liquid
microextraction for determination of organic analytes, TrAC,
Trends Anal. Chem., 29 (2010) 728–751.
- G. D’Orazio, M. Asensio-Ramos, J. Hernández-Borges,
S. Fanali, M.Á. Rodríguez-Delgado, Estrogenic compounds
determination in water samples by dispersive liquid–liquid
microextraction and micellar electrokinetic chromatography
coupled to mass spectrometry, J. Chromatogr. A, 57 (2014) 1–12.
- M. Rezaee, Y. Assadi, M.R. Milani Hosseini, E. Aghaee,
F. Ahmadi, S. Berijani, Determination of organic compounds
in water using dispersive liquid–liquid microextraction,
J. Chromatogr. A, 1116 (2006) 1–9.
- M.L. Martins, E.G. Primel, S.S. Caldas, O.D. Prestes,
M.B. Adaime, R. Zanella, Microextração Líquido-Líquido
Dispersiva (DLLME): fundamentos e aplicações, Sci.
Chromatogr., 4 (2012) 35–51.
- Y. Wen, J. Li, W. Zhang, L. Chen, Dispersive liquid–liquid
microextraction coupled with capillary electrophoresis for
simultaneous determination of sulfonamides with the aid of
experimental design, Electrophoresis, 32 (2011) 2131–2138.
- Y. Han, X. Jia, X. Liu, T. Duan, H. Chen, DLLME Combined with
GC–MS for the determination of methylparaben, ethylparaben,
propylparaben and butylparaben in beverage samples,
Chromatographia, 72 (2010) 351–355.
- M.S. Noorashikin, S. Mohamad, M.R. Abas, Determination
of parabens in water samples by cloud point extraction and
aqueous two-phase extraction using high-performance liquid
chromatography, Desal. Water Treat., 57 (2016) 22353–22361.
- X. Shen, J. Liang, L. Zheng, Q. Lv, H. Wang, Application
of dispersive liquid–liquid microextraction for the
preconcentration of eight parabens in real samples and their
determination by high-performance liquid chromatography,
J. Sep. Sci., 40 (2017) 4385–4393.
- C.A. Chávez-Moreno, L. Hinojosa-Reyes, E.J. Ruiz-Ruiz,
A. Hernández-Ramírez, J.L. Guzmán-Mar, Optimization of
solid-phase extraction of parabens and benzophenones in
water samples using a combination of Plakett-Burman and
Box-Behnken designs, J. Sep. Sci., 41 (2018) 4488–4497.
- F.L.F. da Silva, J.P.S. Oliveira, V.M. Campos, S.T. Gouveia,
L.P.D. Ribeiro, G.S. Lopes, W.O. Matos, Infrared radiation
as a heat source in sample preparation of shrimp for trace
element analysis, J. Food Compos. Anal., 79 (2019) 107–113.
- F.F. De Oliveira, K.O. Moura, L.S. Costa, C.B. Vidal,
A.R. Loiola, R.F. Do Nascimento, Reactive adsorption of
parabens on synthesized micro- and mesoporous silica from
coal fly ash: pH effect on the modification process, ACS Omega,
5 (2020) 3346–3357.
- G. Derringer, R. Suich, Simultaneous optimization of several
response variables, J. Qual. Technol., 12 (2018) 214–219.
- N.R. Costa, J. Lourenço, Multiresponse problems: desirability
and other optimization approaches, J. Chemom., 30 (2016)
702–714.
- BRASIL, RDC N. 166, de 25 de Julho de 2017, Agência Nac.
Vigilância Sanitária (ANVISA), 2017.
- International Conference on Harmonization (ICH), ”Validation
of Analytical Procedures: Text and Methodology” Q2 (R1),
Geneva, 2005.
- Instituto Brasileiro de Geografia e Estatística, No Title, Inst.
Bras. Geogr. e Estatística, IBGE Cid. Fortaleza-CE. (2018) 1.
Available at: https://cidades.ibge.gov.br/brasil/ce/fortaleza/
panorama (accessed May 7, 2021).
- F. da Silva Peixoto, I.N. Cavalcante, D.F. Gomes, Influence of
land use and sanitation issues on water quality of an urban
aquifer, Water Resour. Manage., 34 (2020) 653–674.
- A. Prichodko, V. Šakočiūtė, V. Vičkačkaitė, Dispersive liquid–
liquid microextraction of parabens, Chemija, 21 (2010) 112–117.
- M.I. Leong, M.R. Fuh, S. Da Huang, Beyond dispersive
liquid–liquid microextraction, J. Chromatogr. A, 1335 (2014)
2–14.
- C. Capello, U. Fischer, K. Hungerbühler, What is a green
solvent? A comprehensive framework for the environmental
assessment of solvents, Green Chem., 9 (2007) 927–934.
- A. Gałuszka, Z.M. Migaszewski, P. Konieczka, J. Namieśnik,
Analytical eco-scale for assessing the greenness of analytical
procedures, TrAC, Trends Anal. Chem., 37 (2012) 61–72.
- C. Moreta, M.-T. Tena, K. Kannan, Analytical method for the
determination and a survey of parabens and their derivatives in
pharmaceuticals, Environ. Res., 142 (2015) 452–460.
- P. Hashemi, S. Beyranvand, R.S. Mansur, A.R. Ghiasvand,
Development of a simple device for dispersive liquid–liquid
microextraction with lighter than water organic solvents:
isolation and enrichment of glycyrrhizic acid from licorice,
Anal. Chim. Acta, 655 (2009) 60–65.
- M.A. Farajzadeh, D. Djozan, R.F. Bakhtiyari, Use of a capillary
tube for collecting an extraction solvent lighter than water after
dispersive liquid–liquid microextraction and its application
in the determination of parabens in different samples by
gas chromatography-flame ionization detection, Talanta,
81 (2010) 1360–1367.
- T. Angelov, A. Vlasenko, W. Tashkov, HPLC determination
of pKa of parabens and investigation on their lipophilicity
parameters, J. Liq. Chromatogr. Related Technol., 31 (2007)
188–197.
- D. Błedzka, J. Gromadzińska, W. Wasowicz, Parabens. From
environmental studies to human health, Environ. Int., 67 (2014)
27–42.
- C.F. Grecco, I.D. Souza, V.R. Acquaro Junior, M.E.C.
Queiroz, Determination of parabens in breast milk samples
by dispersive liquid–liquid microextraction (DLLME) and
ultra-high-performance liquid chromatography tandem mass
spectrometry, J. Braz. Chem. Soc., 30 (2019) 48–59.
- R. Jain, M.K.R. Mudiam, A. Chauhan, Ratnasekhar Ch,
R.C. Murthy, H.A. Khan, Simultaneous derivatisation and
preconcentration of parabens in food and other matrices
by isobutyl chloroformate and dispersive liquid–liquid
microextraction followed by gas chromatographic analysis,
Food Chem., 141 (2013) 436–443.
- N. Raza, K.H. Kim, M. Abdullah, W. Raza, R.J.C. Brown,
Recent developments in analytical quantitation approaches for
parabens in human-associated samples, TrAC, Trends Anal.
Chem., 98 (2018) 161–173.
- European Commission Directorate General For Health
And Food Safety, Analytical Quality Control and Method
Validation for Pesticide Residues Analysis in Food and Feed
(SANTE/12682/2019), Sante/12682/2019, 2019, pp. 1–48.
- S. Gülle, H.I. Ulusoy, A. Kabir, A. Tartaglia, K.G. Furton,
M. Locatelli, V.F. Samanidou, Application of a fabric phase
sorptive extraction-high performance liquid chromatographyphotodiode
array detection method for the trace determination
of methyl paraben, propyl paraben and butyl paraben in
cosmetic and environmental samples, Anal. Methods, 11 (2019)
6136–6145.
- M. Becerra-Herrera, V. Miranda, D. Arismendi, P. Richter,
Chemometric optimization of the extraction and derivatization
of parabens for their determination in water samples by
rotating-disk sorptive extraction and gas chromatography mass
spectrometry, Talanta, 176 (2018) 551–557.
- A.V. Marta-Sanchez, S.S. Caldas, A. Schneider, S.M.V.S. Cardoso,
E.G. Primel, Trace analysis of parabens preservatives in
drinking water treatment sludge, treated, and mineral water
samples, Environ. Sci. Pollut. Res., 25 (2018) 14460–14470.
- G. Reichert, S. Hilgert, S. Fuchs, J.C.R. Azevedo, Emerging
contaminants and antibiotic resistance in the different
environmental matrices of Latin America, Environ. Pollut.,
255 (2019), doi: 10.1016/j.envpol.2019.113140.
- S. de A.M. de Araújo, Validação de um método analítico (SPEHPLC)
para determinação de compostos emergentes em águas
superficiais, Doctoral Thesis,Universidade Federal do Ceará,
Ceará, Brazil, 2014.
- R.E. Carlson, A trophic state index for lakes, Limnol. Oceanogr.,
22 (1977) 361–369.
- W.D. Paulino, R. Reis, A. Oliveira, F.F. Avelino, Classificação
Do Estado Trófico Para O Gerenciamento De Reservatórios
No Semiárido: a Experiência Da Cogerh No Estado Ceará
Classification for Trophic State in the Semiarid Reservoir
Management: the Experience of Ceará, Abrh., 2013, pp. 1–8.
- P.C.V. de Morais, A.F. Gama, G.M. Fernandes, A.H.B. Oliveira,
M.F.B. Lima, F.R. dos Santos, D.A. Martins, R.F. Nascimento,
R.M. Cavalcante, Emerging and traditional organic markers
in areas with multiple anthropogenic activities: development
of an analytical protocol and its application in environmental
assessment studies, Bull. Environ. Contam. Toxicol., 102 (2019)
66–76.