origin in areas of interest exists. Establishment of appropriate regulations demands
the development of new, reliable, and low-cost methodologies, which allow an
increase in sampling points and more precise evaluation of the concentrations of
these products, in particular, in environmental waters with the purpose of adopting
adequate measures to achieve a higher chemical quality of the water.
Acknowledgments This work was carried out as part of the activities of the CONACyT Network:
Water Quality and Availability Management (Red Temática CONACyT: Gestión de la Calidad y
Disponibilidad del Agua). It is also part of the activities of the Academic Network: Microbiology
and Chemistry for Health Sciences from the Universidad Autónoma del Estado de México.
References
1. González Pérez R, Poza Guedes P, Vives R, Canto G (2002) Alergol Inmunol Clin
17:247–254
2. Puebla DF (2005) Oncología 28(3):33–37
3. Kuo YL, Liu WL, Hsieh SH, Huang HY (2010) Anal Sci 26:703–707
4. Jian C, Geng J, Hu H, Ma H, Gao J, Ren H (2017) PLoS One 12(6):e0179236. https://doi.org/
10.1371/journal.pone.0179236
5. Farré M, Petrovic M, Gros M, Kosjek T, Martínez E, Heath E, Osvald P, Loos R, Le
Menach K, Budzinski H, De Alencastro F, Muller J, Knepper T, Fink G, Ternes TA (2008)
Talanta 76:580–590
6. Verlichi P (2012) Sci Total Environ 429:123–155
7. Gómez MJ, Petrovic M, Fernández Alba AR, Barceló D (2006) J Chromatogr A
1114:224–233
8. Ascar L, Ahumada I, López A, Quintanilla F, Leiva K (2013) J Braz Chem Soc 24
(7):1160–1166
9. Barceló LD, López de Alda MJ (2007) Panel Científico-Técnico de seguimiento de la política
de aguas. Inst. Invest. Quím. y Amb. CSIC, Barcelona
10. Daughton CG (2004) Environ Impact Assess Rev 24:711–732
11. Stuart M, Lapworth D, Crane E, Hart A (2012) Sci Total Environ 416:1–21
12. Gil MJ, Soto AM, Usma JI, Gutiérrez OD (2012) Producción Limpia 7(2):52–73
13. Aukidi MA, Verlichi P, Voulvoilis N (2014) Sci Total Environ 493:54–64
14. Pluciennik-Koropczuk E (2014) CEER 14(1):63–74
15. Wongrakpanich S, Wongrakpanich A, Melhado K, Rangaswami J (2018) Aging Dis 9
(1):143–150
16. Kermia AEB, Fouial-Djebbar D, Trari M (2016) C R Chim 19(8):963–970
17. Marachese S, Perret D, Gentily A, Curini R, Pastori F (2003) Chromatographia 58
(5/6):263–269
18. Monteiro SC, Boxall AB (2010) Rev Environ Contam Toxicol 202:53–154
19. Daouk S, Fleury-Souberain S, Daaly Y (2015) Chimia 69(11):684–689
20. Sui Q, Cao J, Lu S, Zhao W, Qiu Z, Yu G (2015) Emerg Contam 1:14–24
21. Daughton CG, Ternes TA (1999) Environ Heatlh Perspect 107:907–938
22. Oaks JL, Gilbert M, Virani MZ, Watson RT, Meteyer CU, Rideout BA, Shivaprasad HL,
Ahmed S, Chaudhry MJ, Arshad M, Mahmood S, Ali A, Khan AA (2004) Nature 427
(6975):630–633
23. Green RE, Newton I, Shultz S, Cunningham AA, Gilbert M, Pain DJ, Prakash V (2004) J Appl
Ecol 41:793–800
24. Chen HC, Wang PL, Ding WH (2008) Chemosphere 72:863–869
100
K. Isaac-Olivé et al.
Précédent

- 112/342

Suivant