Artículo

Robles, A.D.; Polizzi, P.; Romero, M.B.; Chiodi Boudet, L.N.; Medici, S.; Costas, A.; Gerpe, M. "Geochemical mobility of arsenic in the surficial waters from Argentina" (2016) Environmental Earth Sciences. 75(23)
Estamos trabajando para incorporar este artículo al repositorio
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

The presence of arsenic (As) in surface water constitutes an important environmental risk, where mobility and adsorption processes are responsible for its behavior in the sediment–water interface. Therefore, the assessment of adsorption, mobility and water availability of arsenic in freshwater sediments, with agricultural, livestock and urban soil uses was performed. Arsenic concentrations in sediments ranged from 5.4 to 15.9 mg kg−1 (total) and 2.8 to 6.5 mg kg−1 (labile), and those of iron and manganese were 11,563–23,500 and 140.6–662.1 mg kg−1, respectively. The As levels in water were significantly lower than those of sediments. Results would suggest that As co-precipitation and adsorption on Fe oxides are probably the major route of immobilization, determining its low lability. Manganese did not present an outstanding contribution to the retention, and cation-exchange capacity, pH and organic matter of sediments did not show an influence on the mobility of As. © 2016, Springer-Verlag Berlin Heidelberg.

Registro:

Documento: Artículo
Título:Geochemical mobility of arsenic in the surficial waters from Argentina
Autor:Robles, A.D.; Polizzi, P.; Romero, M.B.; Chiodi Boudet, L.N.; Medici, S.; Costas, A.; Gerpe, M.
Filiación:Toxicología Ambiental, Departamento de Ciencias Marinas, Instituto de Investigaciones Marinas y Costeras, Facultad de Ciencias Exactas y Naturales, Universidad Nacional de Mar del Plata, Funes 3350, Mar del Plata, Argentina
Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina
Laboratorio de Análisis Fares Taie, Magallanes 3019, 1°piso, Mar del Plata, Argentina
Palabras clave:Adsorption; Arsenic; Mobility; Surface sediment; Adsorption; Agriculture; Arsenic; Carrier mobility; Manganese; Soils; Surface waters; Adsorption process; Cation exchange capacities; Environmental risks; Freshwater sediment; Geochemical mobilities; Surface sediments; Water availability; Water interface; Sediments
Año:2016
Volumen:75
Número:23
DOI: http://dx.doi.org/10.1007/s12665-016-6273-2
Título revista:Environmental Earth Sciences
Título revista abreviado:Environ. Earth Sci.
ISSN:18666280
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_18666280_v75_n23_p_Robles

Referencias:

  • Arai, Y., Sparks, D.L., ATR-FTIR spectroscopic investigation of phosphate adsorption mechanisms at the ferrihydrite–water interface (2001) J Colloid Interfaces Sci, 241, pp. 317-326
  • Benson, N.Q., Anake, W.U., Etesin, U.M., Trace metals levels in inorganic fertilizers commercially available in Nigeria (2014) JSRR, 3, pp. 610-620
  • Bodewig, F.G., Valenta, P., Nürnberg, H.W., Trace determination of As (III) and As (V) in natural waters by differential pulse anodic stripping voltammetry (1982) Fresen Z Anal Chem, 311, pp. 187-191
  • Borgnino, L., De Pauli, C.P., Depetris, P.J., Arsenate adsorption at the sediment–water interface: sorption experiments and modelling (2012) Environ Earth Sci, 65 (2), pp. 441-451
  • Bundschuh, J., Farias, B., Martin, R., Storniolo, A., Bhattacharya, P., Cortes, J., Bonorino, G., Albouy, R., Groundwater arsenic in the Chaco-Pampean Plain, Argentina: case study from Robles county, Santiago del Estero Province (2004) Appl Geochem, 19, pp. 231-243
  • (2007) Capítulo XII. Bebidas hídricas, agua y agua gasificada, , http://www.anmat.gov.ar/alimentos/codigoa/Capitulo_XII.pdf, CAA (Código Alimentario Argentino), Accessed: 29 de septiembre de 2016
  • Carrasquero, A., Adams, M., Estudio del complejo amarillo vanadomolibdofosfórico para el análisis de fósforo en suelos (2011) Venesuelos, 3, pp. 83-88
  • Casiot, C., Ujevic, M., Munoz, M., Seidel, J.L., Elbaz-Poulichet, F., Antimony and arsenic mobility in a creek draining an antimony mine abandoned 85 years ago (upper Orb basin, France) (2007) Appl Geochem, 22 (4), pp. 788-798
  • Chapagain, S.K., Shrestha, S., Du Laing, G., Verloo, M., Kazama, F., Spatial distribution of arsenic in the intertidal sediments of River Scheldt, Belgium (2009) Environ Int, 35 (3), pp. 461-465
  • Chen, M., Ma, L.Q., Harris, W.G., Arsenic concentrations in Florida surface soils: influence of soil type and properties (2002) Soil Sci Soc Am J, 66, pp. 632-640
  • Cohen, C., Línea de base Ambiental de la Cuenca de los Arroyos El Durazno y La Totora. Partido de General Alvarado, Provincia de Buenos Aires. Tesis de Licenciatura en Geografía (2014) Universidad Nacional de Mar del Plata, p. 102
  • Cordos, E.A., Frentiua, T., Pontaa, M., Marginean, L., Abrahamb, B., Roman, C., Distribution study of inorganic arsenic (III) and (V) species in soil and their mobility in the area of Baia-Mare, Romania (2006) Chem Spec Bioavailab, 18 (1), pp. 11-25
  • De Mello, J.W.V., Roy, W.R., Talbott, J.L., Stucki, J.W., Mineralogy and arsenic mobility in arsenic-rich brazilian soils and sediments (2006) J Soils Sedim, 6 (1), pp. 9-19
  • Manual of methods in aquatic environmental research, part 9. Analyses of metals and organochlorines in fish (1983) FAO Fisheries/Technical Paper, p. 212
  • Fendorf, S., Herbel, M.J., Tufano, K.J., Kocar, B.D., Violante, A., Huang, P.M., Gadd, G.M., Biogeochemical processes controlling the cycling of arsenic in soils and sediments (2008) Huang PM, pp. 313-338. , Biophysico-chemical processes of heavy metals and metalloids in soil environments, Wiley
  • Reaction pH (1972) Soil survey laboratory methods and procedures for collecting soil samples. US, p. 86. , Department of Agriculture, Washington, DC
  • Heck, J.E., Andrew, A.S., Onega, T., Rigas, J.R., Jackson, B.P., Karagas, M.R., Duell, E.J., Lung cancer in a US population with low to moderate arsenic exposure (2009) Environ Health Perspect, 117, pp. 1718-1723
  • Calidad ambiental. Calidad de suelo (2012) Capacidad de intercambio catiónico y cationes básicos intercambiables, , http://aplicaciones.iram.org.ar/, IRAM-SAGyP 29577-1. Parte: Determinación en suelos ligeramente ácidos a neutros y no calcáreo. In:. Accessed: 29 de septiembre de 2015
  • Kruse, E., Aspectos geohidrológicos de la región sudoriental de Tandilla. Cuencas de los Aos. Vivoratá, las Brusquitas y el Durazno (1986) Asociación Geológica Argentina, Revista, 41, pp. 367-374
  • Kruse, E., Varela, L., Laurencena, P., Deluchi, M., Rojo, A., Carol, E., Modificaciones del Ciclo Hidrológico en un Área del Noreste de la Provincia de Buenos Aires. Argentina. Serie Hidrogeología y aguas subterráneas 11:131–139. Instituto Geológico Minero de España. ISBN 84-7840-539-9 (2004) Madrid
  • Li, Z., Hong, H., Jean, J.S., Koski, A.J., Liu, C.C., Reza, S., Randolph, J.J., Antinucci, S.J., Characterization on arsenic sorption and mobility of the sediments of Chia-Nan Plain, where Blackfoot disease occurred (2011) Environ Earth Sci, 64 (3), pp. 823-831
  • Luoma, S.N., Processes affecting metal concentrations in estuarine and coastal marine sediments (1990) Heavy metals in the marine environment, pp. 51-66. , Furness RW, Rainbow PS, (eds), CRC Press Inc, Boca Raton
  • Ma, J., Guo, H., Lei, M., Zhou, X., Li, F., Yu, T., Wei, R., Wu, Y., Arsenic adsorption and its fractions on aquifer sediment: effect of pH, arsenic species, and iron/manganese minerals (2015) Water Air Soil Pollut, 226 (8), pp. 1-15
  • Mandal, B.K., Suzuki, K.T., Arsenic round the world: a review (2002) Talanta, 58, pp. 201-235
  • Martín, A.V., García, M.C., Contaminación química de aguas para consumo en la periferia urbana de la localidad de Miramar, Provincia de Buenos Aires, Argentina. Nadir: Revista electrónica de geografía austral (2009) Año, 1, pp. 12-30
  • Martínez, D., Osterrieth, M., Hydrogeochemistry and pollution effects of an aquifer in Quaternary loess like sediments in the landfilling area of Mar del Plata, Argentina (2013) Revista Facultad Ingeniería, Universidad de Antioquia, 66, pp. 9-23
  • Mohan, D., Pittman, C.U., Jr., Arsenic removal from water/wastewater using adsorbents—a critical review (2007) J Hazard Mater, 142, pp. 1-53
  • Morrás, H.J., Mineralogy and cation exchange capacity of the fine silt fraction in two soils from the southern Chaco Region (Argentina) (1995) Geoderma, 64, pp. 281-295
  • Müller, K., Daus, B., Morgenstern, P., Wennrich, R., Mobilization of antimony and arsenic in soil and sediment samples—evaluation of different leaching procedures (2007) Water Air Soil Pollut, 183 (1-4), pp. 427-436
  • Nicolli, H.B., Bundschuh, J., Blanco, M.C., Tujchneider, O.F., Panarello, H.O., Dapeña, C., Rusansky, J.E., Arsenic and associated trace-elements in groundwater from the Chaco-Pampean plain, Argentina: results from 100 years of research (2012) Sci Total Environ, 429, pp. 36-56
  • Paoloni, J.D., Sequeira, M.E., Espósito, M.E., Fiorentino, C.E., Blanco, M.D.C., Arsenic in water resources of the Southern Pampa Plains, Argentina (2009) J Environ Public Health, 2009, pp. 1-7
  • Parfitt, R.L., Atkinson, R.J., Smart, R.S.C., Mechanism of phosphate fixation by iron oxides (1975) Soil Sci Soc Am J, 39, pp. 837-841
  • Pérez Carrera, A., Fernández Cirelli, A., Arsenic concentration in water and bovine milk in Cordoba, Argentina. Preliminary results (2005) J Dairy Res, 72, pp. 122-124
  • Puccia, V., Limbozzi, F., Avena, M., Arsenic in porewaters of the unsaturated zone of an Argentinean watershed: adsorption and competition with carbonate as important processes that regulate its concentration (2015) Aquat Geochem, 21, pp. 513-534
  • Puntoriero, M., Volpedo, A.V., Fernández Cirelli, A., Arsenic, Fluoride, and Vanadium in surfacewater (Chasicó Lake, Argentina) (2014) Front Environ Sci, 2, pp. 1-5
  • Puntoriero, M.L., Fernandez Cirelli, A., Volpedo, A.V., Geochemical mechanisms controlling the chemical composition of groundwater and surface water in the southwest of the Pampean plain (Argentina) (2015) J Geochem Explor, 150, pp. 64-72
  • Quiroz Londoño, O.M., Martinez, D.E., Massone, H.E., Evaluación Comparativa de Métodos de Cálculo de Recarga en Ambientes de Llanura. La Llanura Interserrana Bonaerense (Argentina), como caso de estudio. Comparative Assessment of Recharge Estimation (2012) Dyna, 79, pp. 15-25
  • Romanelli, A., Quiroz Londoño, O.M., Massone, H.E., Martínez, D.E., Bocanegra, E., El agua subterránea en el funcionamiento hidrológico de los humedales del Sudeste Bonaerense, Provincia de Buenos Aires, Argentina (2011) Boletín Geológico y Minero, 121, pp. 373-386
  • Root, R.A., Dixit, S., Campbell, K.M., Jew, A.D., Hering, J.G., O’Day, P.A., Arsenic sequestration by sorption processes in high-iron sediments (2007) Geochimica Cosmo Acta, 71 (23), pp. 5782-5803
  • Rosso, J.J., Puntoriero, M.L., Troncoso, J.J., Volpedo, A.V., Fernández Cirelli, A., Occurrence of fluoride in arsenic-rich surface waters: a case study in the Pampa Plain, Argentina (2011) Bull Environ Contam Toxicol, 87, pp. 409-413
  • Rosso, J.J., Schenone, N.F., Carrera, A.P., Cirelli, A.F., Concentration of arsenic in water, sediments and fish species from naturally contaminated rivers (2013) Environ Geochem Health, 35, pp. 201-214
  • Sarkar, S.K., Favas, P.J.C., Rakshit, D., Satpathy, K.K., Geochemical speciation and risk assessment of heavy metals in soils and sediments. In: Environmental risk assessment of soil contamination, chap 25. InTech (2014) pp 723–757
  • Smedley, P.L., Kinniburgh, D.G., A review of the source, behaviour and distribution of arsenic in natural waters (2002) Appl Geochem, 17, pp. 517-568
  • Smedley, P.L., Kinniburgh, D.G., Macdonald, D.M.J., Nicolli, H.B., Barros, A.J., Tullio, J.O., Pearce, J.M., Alonso, M.S., Arsenic associations in sediments from the loess aquifer of La Pampa, Argentina (2005) Appl Geochem, 20, pp. 989-1016
  • Stollenwerk, K.G., Welch, A.H., Stollenwerk, K.G., Geochemical processes controlling transport of arsenic in groundwater: a review of adsorption (2003) Arsenic in Ground Water: Geochemistry and Occurrence, pp. 67-100. , Kluwer Academic Publishers, Boston
  • Strickland, J.D.H., Parsons, T.R., (1972) A practical handbook of seawater analysis, p. 167. , Bulletin of Fisheries Research Board of Canada, Ottawa
  • Tremearne, T.H., Jacob, K.D., Arsenic in natural phosphates and phosphate fertilizers (1941) Tech Bull, 781, pp. 1-41
  • Monitored natural attenuation of inorganic contaminants in groundwater. Assessment for non-radionuclides including arsenic, cadmium, chromium, copper, lead, nickel, nitrate, perchlorate, and selenium, vol 2 (2007) EPA/600/R-07/140, p. 124
  • Volpedo, A., Puntoriero, M.L., Fernández Cirelli A (2012) Riesgo potencial de las altas concentraciones de arsénico en el Lago Chasicó (Buenos Aires, Argentina), p. 2012. , In, VII Congreso de Medio Ambiente (La Plata
  • Walkley, A., Black, I.A., An examination of Degtjareff method for determining soil organic matter and a proposed modification of the chromic acid titration method (1934) Soil Sci, 37, pp. 29-37
  • (2006), http://www.who.int, World Health Organization (WHO). Accessed: 29 de septiembre de 2015; Zan, F., Huo, S., Zhang, J., Zhang, L., Xi, B., Zhang, L., Arsenic fractionation and contamination assessment in sediments of thirteen lakes from the East Plain and Yungui Plateau Ecoregions, China (2014) J Environ Sci, 26, pp. 1977-1984
  • Zar, J.H., (2010) Biostatistical analysis, p. 944. , Prentice Hall Inc, Englewood Cliffs

Citas:

---------- APA ----------
Robles, A.D., Polizzi, P., Romero, M.B., Chiodi Boudet, L.N., Medici, S., Costas, A. & Gerpe, M. (2016) . Geochemical mobility of arsenic in the surficial waters from Argentina. Environmental Earth Sciences, 75(23).
http://dx.doi.org/10.1007/s12665-016-6273-2
---------- CHICAGO ----------
Robles, A.D., Polizzi, P., Romero, M.B., Chiodi Boudet, L.N., Medici, S., Costas, A., et al. "Geochemical mobility of arsenic in the surficial waters from Argentina" . Environmental Earth Sciences 75, no. 23 (2016).
http://dx.doi.org/10.1007/s12665-016-6273-2
---------- MLA ----------
Robles, A.D., Polizzi, P., Romero, M.B., Chiodi Boudet, L.N., Medici, S., Costas, A., et al. "Geochemical mobility of arsenic in the surficial waters from Argentina" . Environmental Earth Sciences, vol. 75, no. 23, 2016.
http://dx.doi.org/10.1007/s12665-016-6273-2
---------- VANCOUVER ----------
Robles, A.D., Polizzi, P., Romero, M.B., Chiodi Boudet, L.N., Medici, S., Costas, A., et al. Geochemical mobility of arsenic in the surficial waters from Argentina. Environ. Earth Sci. 2016;75(23).
http://dx.doi.org/10.1007/s12665-016-6273-2