Water quality of rivers in the eastern region of Cianorte (Paraná, Brazil) under relevant influence of industrial and agricultural waste

Authors

DOI:

https://doi.org/10.33448/rsd-v10i8.17336

Keywords:

Springs; Physical-chemical parameters; Cytotoxicity; Genotoxicity; Phytotoxicity; Anthropic actions.

Abstract

The Catingueiro, Cristalino and Ligeiro Rivers, present in the eastern region of Cianorte, Paraná, Brazil, are under constant influence of industrial effluents and agrochemicals. In 2022, the public supply of this municipality will be made by waters of the Ligeiro River, and the sites predicted for abstraction are close to the sites of confluence of the Catingueiro River and the Cristalino River with the Ligeiro River. We evaluated in two periods of 2020, based on different parameters, the water quality of the Catingueiro River at two sites, P1 and P2 (P2, upstream of the confluence), the Cristalino River in one site, P3, and the Ligeiro River at two sites, P4 and P5 (P5, downstream of the confluence). Levels of nitrite, nitrate and sulfate in waters were within the range set by law. All points had a high concentration of fluorides and phosphato in the two collections. In P1, in both collections, a high concentration of copper was found.  P1 and P2, in the second collection, presented high levels of aluminum. Silicon was detected at all sites. Waters were phytotoxic to L. sativa and cytotoxic to the root meristems of A. cepa. Physical-chemical and toxicity analyses suggest a compromise in water quality. These data are an alert to the public authorities of Cianorte and Paraná regarding the anthropic actions carried out in these rivers and alert the sanitation company to carry out a preliminary and periodic analysis of the waters in order to know the contaminants present before treating them.

References

Andrade, T. S., Montenegro, S. M., Montenegro, A. A., & Rodrigues, D. F. (2012). Spatio-temporal variability of groundwater electrical conductivity in the semiarid region of Pernambuco. Revista Brasileira de Engenharia Agrícola e Ambiental, 16, 496-504.

Aguiar, T. R., Neto, J. O. A. G., Şen, U., & Pereira, H. (2019). Study of two cork species as natural biosorbents for five selected pesticides in water. Heliyon, 5, e01189.

Barbério, A., Barros, L. A. Y. R. A., Voltolini, J. C., & Mello, M. L. (2009). Evaluation of the cytotoxic and genotoxic potential of water from the River Paraíba do Sul, in Brazil, with the Allium cepa L. test. Brazilian Journal of Biology, 69, 837-842.

Brasil. Conselho Nacional do Meio Ambiente (CONAMA). (2005). Resolution No. 396 of April 3, 2005. Ministério do Meio Ambiente. (in Portuguese).

Biruk, L.N., Moretton, J., Iorio, A.F., Weigandt, C., Etcheverry, J., Filippetto, J., & Magdaleno, A. (2017). Toxicity and genotoxicity assessment in sediments from the Matanza-Riachuelo river basin (Argentina) under the influence of heavy metals and organic contaminants. Ecotoxicology and Environmental Safety, 135, 302-311. https://doi.org/10.1016/j.ecoenv.2016.09.024

Brack, W., Dulio, V., Ågerstrand, M., Allan, I., Altenburger, R., Brinkmann, M., & Vrana, B. (2017). Towards the review of the European Union Water Framework Directive: recommendations for more efficient assessment and management of chemical contamination in European surface water resources. Science of the Total Environment, 576, 720-737. https://doi.org/10.1016/j.scitotenv.2016.10.104

Buck, G. B., Korndörfer, G. H., & Datnoff, L. E. (2010). Extractors for estimating plant available silicon from potential silicon fertilizer sources. Journal of Plant Nutrition, 34, 272-282. https://doi.org/10.1080/01904167.2011.533327

Chan-Keb, C. A., Agraz-Hernández, C. M., Perez-Balan, R. A., Gómez-Solano, M. I., Maldonado-Montiel, T. D., Ake-Canche, B., & Gutiérrez-Alcántara, E. J. (2018). Acute toxicity of water and aqueous extract of soils from Champotón river in Lactuca sativa L. Toxicology Reports, 5, 593-597. https://doi.org/10.1016/j.toxrep.2018.05.009

Cianorte (2021). Cianorte City Hall. Retriewed January 10, 2021, from https://cianorte.pr.gov.br. (in Portuguese).

Damasceno, M. C. S., Ribeiro, H. M. C., Takiyama, L. R., & Paula, M. T. (2015). Seasonal assessment of the surface water quality of the Amazon River on the edge of the city of Macapá, Amapá, Brazil. Revista Ambiente & Água, 10, 598-613.

Dong, W., & Zhang, Y., & Quan, X. (2020). Health risk assessment of heavy metals and pesticides: A case study in the main drinking water source in Dalian, China. Chemosphere, 242,125113. https://doi.org/10.1016/j.chemosphere.2019.125113

Eaton, A. D., Clesceri, L. S., & Greenberg, A. E. (2005). Standard methods for the examination of water and wastewater. Public Health Association. 250p.

Gomes, K. M. S., Oliveira, M. V. G. A. D., Carvalho, F. R. D. S., Menezes, C. C. & Peron, A. P. (2013). Citotoxicity of food dyes sunset yellow (E-110), bordeaux red (E-123), and tatrazine yellow (E-102) on Allium cepa L. root meristematic cells. Food Science and Technology, 33, 218-223. https://doi.org/10.1590/S0101-20612013005000012

Guedes, C. M., Santos, F. K. S., Silva, T., Silva, A. P. S., Lima, M. V. S., & Peron, A. P. (2018). Cytotoxic and genotoxic potential of Ginkgo biloba L., in industrialized and without-additive forms. Bioscience Journal, 34, 1017–1024. https://doi.org/10.14393/BJ-v34n1a2018-39745

Guerra, M., & Souza, M. J. (2002). How to observe chromosomes: a guide to techniques in plant, animal and human cytogenetics. FUNPEC. 270p.

Gonçalves, E. V. (2020). Water quality of water resources in the city of Cianorte, State of Paraná, Brazil: a city influenced by the presence of jeans laundry and agriculture. Dissertation, Federal Technological University of Paraná. (in Portuguese).

Guimarães, B. S., Kliemann, N., Caldas, S., Costa, F., Silveira, M. A. K., Duarte, F. A., & Primel, E. S. (2013). Environmentally friendly system for the degradation of multipesticide residues in aqueous media by the Fenton’s reaction. Environmental Science and Pollution Research, 21, 584–592. https://doi.org/10.1007/s11356-013-1932-2

Herrero, O., Martín, J. P., Freire, O. F., López, L., Peropadre, A., & Hazen, M. J. (2012). Toxicological evaluation of three contaminant of emerging concern by use of Allium cepa test. Mutation Research, 743, 24–34.

IBGE (2019). Brazilian Institute of Geography and Statistics. Cities. Retriewed january 10, 2021, from http://cidades.ibge.gov.br/xtras/perfil.php?codmun=410430>. (in Portuguese).

Koche, J. C. (2011). Fundamentos de metodologia científica. Petrópolis: Vozes. http://www.brunovivas.com/wp-content/uploads/sites/10/2018/07/K%C3%B6che-Jos%C3%A9-Carlos0D0AFundamentos-de-metodologia-cient%C3%ADfica-_-teoria-da0D0Aci%C3%AAncia-e-inicia%C3%A7%C3%A3o-%C3%A0-pesquisa.pdf 5.2)

Lim, E. S., Lim, M. C., Park, K., Lee, G,. Lim, J. A., Woo, M. A., & Chang, H. J. (2020). Selective Binding and Elution of Aptamers for Pesticides Based on Sol-Gel-Coated Nanoporous Anodized Aluminum Oxide Membrane. Nanomaterials, 10, 1533. https://doi.org/10.3390/nano10081533

Li, J., Song, Y., Vogt, R. D., Liu, Y., Luo, J., & Li, T. (2020). Bioavailability and cytotoxicity of Cerium-(IV), Copper-(II), and Zinc oxide nanoparticles to human intestinal and liver cells through food. Science of The Total Environment, 702, 134700. https://doi.org/10.1016/j.scitotenv.2019.134700

Malakahmad, A., Abd Manan, T. S. B., Sivapalan, S., & Khan, T. (2018). Genotoxicity assessment of raw and treated water samples using Allium cepa assay: evidence from Perak River, Malaysia. Environmental Science and Pollution Research, 25, 5421-5436. https://doi.org/10.1007/s11356-017-0721-8

Matos, L. A., Cunha, A. C., Sousa, A. A., Maranhão, J. P., Santos, N. R., Gonçalves, M. C., & Ferreira-Junior, H. (2017). The influence of heavy metals on toxicogenetic damage in a Brazilian tropical river. Chemosphere, 185, 852-859. https://doi.org/10.1016/j.chemosphere.2017.07.103

Mendes, S. A., Gonçalves, É. V., Frâncica, L. S., Correia, L. B. C., Nicola, J. V. N., Pestana, A. C. Z., & Peron, A. P. (2020). Quality of Natural Waters Surrounding Campo Mourão, State of Paraná, Southern Brazil: Water Resources Under the Influences from Urban and Agricultural Activities. Water, Air, & Soil Pollution, 231, 1-10. https://doi.org/10.1007/s11270-020-04795-5.

Mendes, S. A., Frâncica, L. S., Gonçalves, E. V., Coleto, L. B., Nicola, J. V. N., Pestana, A. C. Z., Souza, D. C., Bueno, P. A. A., Medeiros, F. V. S., Ineu, R. P., Souza, W. E., & Peron, A. P. (2021). Prospecting for Phytotoxicity and Enzymatic Modulation of Waters from Springs in the Surroundings of Campo Mourão, State of Paraná, Brazil, in Lactuca sativa L. Water, Air, & Soil Pollution, 232, 42-52. https://doi.org/10.1007/s11270-021-05003-8

Mtisi, M., & Gwenzi, W. (2019). Evaluation of the phytotoxicity of coal ash on lettuce (Lactuca sativa L.) germination, growth and metal uptake. Ecotoxicology and Environmental Safety, 170, 750-762. https://doi.org/10.1016/j.ecoenv.2018.12.047

Nunes, R. D. M., Sales, I. M. S., Silva, S. I. O., Sousa, J. M. C., & Peron, A. P. (2017). Antiproliferative and genotoxic effects of nature identical and artificial synthetic food additives of aroma and flavor. Brazilian Journal of Biology, 77, 150-154. http://dx.doi.org/10.1590/1519-6984.12115

Palacio, S. M., Espinoza-Quiñones, F. R., Galante, R. M., Zenatti, D. C., Seolatto, A. A., Lorenz, E. K., Zacarkim, C. E., Rossi, N., Rizzutto, M. A., & Tabacniks, M. H. (2005). Correlation between heavy metal íons (Copper, Zinc, Lead) concentrations and root length of Allium cepa L. in polluted river water. Brazilian Archives of Biology and Technology, 48, 191-196. http://dx.org/10.1590/S1516-89132005000400024

Paraginski, R. T., Rockenbach, B. A., Santos, R. F., Elias, M. C., & Oliveira, M. (2015). Quality of corn kernels stored at different temperatures. Revista Brasileira de Engenharia Agrícola e Ambiental, 19, 358-363.

Paredes, P. F. M., Vasconcelos, F. R., Paim, R. T. T., Marques, M. M. M., Morais, S. M., & Lira, S. M. (2016). Screening of bioactivities and toxicity of Cnidoscolus quercifolius Pohl. Evidence-Based Complementary and Alternative Medicine (Print), 2016. https://doi.org/10.4103/2221-1691.237077

Priac, A., Badot, P. M., & Crini, G. (2017). Treated wastewater phytotoxicity assessment using Lactuca sativa: focus on germination and root elongation test parameters. Comptes Rendus Biologies, 340, 188-194. https://doi.org/10.1016/j.crvi.2017.01.002

Sacramento, E. B., Azevedo, C. D. A., Abreu, S. T., Borba, H. R., & Lima, V. M. D. (2020). Evaluation of the cytotoxic and genotoxic potential of waters of the Paraíba do Sul River Basin-RJ through the Allium cepa test system. Revista Ambiente & Água, 15. https://doi.org/10.4136/ambi-agua.2521

Sales, I. M. S., Barbosa, J. S., Santos, F. K. S., Silva, F. C. C., Ferreira, P. M. P., Sousa, J. M. C., & Peron, A. P. (2017). Acute toxicity of grape, plum and orange synthetic food flavourings evaluated in vivo test systems. Food Technology and Biotechnology, 55, 131-137. https://doi.org/10.17113/fts.55.01.17.4770

Sanepar (2020). Paraná Sanitation Company. Retrieved January 1, 2021, form https://sanepar.com.br.

Santos, C.N., & Carmo, B.C. (2020). The sustainability challenge in Cianorte's industrial laundries. Brazilian Journal of Development, 6, 83771-83785.

Schoenhals, M., & Porto, A. E. (2013). Effluent treatment, water reuse and legislation applied in industrial textile laundry. Engenharia Ambiental: Pesquisa e Tecnologia, 10, 20-30. (in Portuguese).

Silva, M. S. D. (2020). Creation of APAs in the public supply source of Cianorte-PR: an alternative for the promotion of the sustainable use of the basin and the maintenance of the quality of the water resource. Dissertation, Universidade Tecnológica Federal do Paraná. (in Portuguese).

Silva, Y. G. A. E. S., Almeida, P. M., & Peron, A. P. (2020). Irrigation water quality of a community garden complex in the State of Piauí, Northeastern Brazil. Water, Air, & Soil Pollution, 231, 113. https://doi.org/10.1007/s11270-020-04486-1

Silva, T. D. S., Silva, A. P. S. E., de Almeida Santos, A., Ribeiro, K. G., Souza, D. C. D., Bueno, P. A. A., & Peron, A. P. (2020). Cytotoxicity, Genotoxicity, and Toxicity of Plant Biostimulants Produced in Brazil: Subsidies for Determining Environmental Risk to Non-Target Species. Water, Air, & Soil Pollution, 231, 1-8. https://doi.org/10.1007/s11270-020-04614-x

Silveira, G. L., Lima, M. G. F., Dos Reis, G. B., Palmieri, M. J., & Andrade-Vieria, L. F. (2017). Toxic effects of environmental pollutants: Comparative investigation using Allium cepa L. and Lactuca sativa L. Chemosphere, 178, 359-367.

Souza, A.I. (2019). Logistical optimization of soy and corn storage units in the State of Paraná. Dissertation, State University of Western Paraná. (in Portuguese).

Souza, P. M. S., Sommaggio, L. R. D., Marin-Morales, M. A., Morales, A. R. (2020) PBAT biodegradable mulch films: Study of ecotoxicological impacts using Allium cepa, Lactuca sativa and HepG2/C3A cell culture. Chemosphere, 256, 126985. https://doi.org/10.1016/j.chemosphere.2020.126985

Tabrez, S., & Ahmad, M. (2011). Oxidative stress-mediated genotoxicity of wastewaters collected from two different stations in northern India. Mutation Research/Genetic Toxicology and Environmental Mutagenesis, 726(1), 15-20. https://doi.org/10.1016/j.mrgentox.2011.07.012

Vasconcelos, J. F., Barbosa, J. E. L., Diniz, C. R., & Ceballos, B. S. O. (2011). Cyanobacteria in reservoirs in the State of Paraíba: occurrence, toxicity and regulatory factors. Boletim da Sociedade Brasileira de Limnologia, 39, 1-20.

Yuet Ping, K., Darah, I., Yusuf, U. K., Yeng, C., & Sasidharan, S. (2012). Genotoxicity of Euphorbia hirta: an Allium cepa assay. Molecules, 17, 7782-7791. https://doi.org/10.3390/molecules17077782

Vlček, V., & Pohanka, M. (2018). Adsorption of copper in soil and its dependence on physical and chemical properties. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis, 66, 219-224. https://doi.org/10.11118/actaun201866010219

Zhao, L., Ortiz, C., Adeleye, A. S., Hu, Q., Zho, H., Huang, Y., & Keller, A. A. (2016). Metabolomics to detect response of lettuce (Lactuca sativa) to Cu (OH) 2 nanopesticides: oxidative stress response and detoxification mechanisms. Environmental Science and Technology, 50, 9697-9707. https://doi.org/10.1021/acs.est.6b02763

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Published

12/07/2021

How to Cite

GONÇALVES, Éderson V. .; FRÂNCICA, L. S. .; TOFOLLI, T. N. de .; MEDEIROS, F. V. da S. .; SOUZA, D. C. de; BUENO, P. A. A. .; CANESIN, E. A.; PERON, A. P. . Water quality of rivers in the eastern region of Cianorte (Paraná, Brazil) under relevant influence of industrial and agricultural waste. Research, Society and Development, [S. l.], v. 10, n. 8, p. e27610817336, 2021. DOI: 10.33448/rsd-v10i8.17336. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/17336. Acesso em: 23 apr. 2024.

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Agrarian and Biological Sciences