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Erschienen in: Environmental Earth Sciences 16/2017

01.08.2017 | Original Article

Heavy metal pollution in the soil surrounding a thermal power plant in Playas de Rosarito, Mexico

verfasst von: M. A. Pastrana-Corral, F. T. Wakida, J. Temores-Peña, D. D. Rodriguez-Mendivil, E. García-Flores, T. D. J. Piñon-Colin, A. Quiñonez-Plaza

Erschienen in: Environmental Earth Sciences | Ausgabe 16/2017

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Abstract

The generation of electricity has been identified as one of the main pollutant activities, and some studies have established an increment of heavy metals in soil in the areas surrounding these plants. The aim of this study was to evaluate the soil concentrations of heavy metals in the zone surrounding a thermoelectric power in Mexico. Thirty-two top soil samples (0–5 cm) were collected; additionally, four depth profiles (1 m) were investigated. Median concentrations for chromium, vanadium, nickel, mercury, and cadmium were 47, 47, 73, 0.02, and 0.01 mg/kg, respectively. Higher Cr, Ni, and V concentrations were observed in the soil depth profiles located closer to the plant in comparison with the concentrations found in the soil depth profile located further away from the plant; these results may indicate a possible accumulation of these metals. The geoaccumulation index results indicated that most of the sites were in the classifications of unpolluted and unpolluted to moderately polluted (classes 1 and 2). The statistical results showed that downwind of the plant in relation to the prevailing winds, there was a strong correlation between soil concentrations of chromium, copper, nickel, and vanadium. Based on the results of this study, it can be concluded that the use of fuel oil at the thermoelectric plant contributed to the accumulation of vanadium and nickel in the soil of the surrounding areas, as well as chromium and copper.

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Literatur
Zurück zum Zitat Agrawal P, Mittal A, Prakash R, Kumar M, Singh TB, Tripathi SK (2010) Assessment of contamination of soil due to heavy metals around coal fired thermal power plants at Singrauli Region of India. Bull Environ Contam Toxicol 85:219–223. doi:10.1007/s00128-010-0043-8 CrossRef Agrawal P, Mittal A, Prakash R, Kumar M, Singh TB, Tripathi SK (2010) Assessment of contamination of soil due to heavy metals around coal fired thermal power plants at Singrauli Region of India. Bull Environ Contam Toxicol 85:219–223. doi:10.​1007/​s00128-010-0043-8 CrossRef
Zurück zum Zitat Alonso-Hernández CM, Bernal-Castillo J, Bolaños-Alvarez Y, Gómez-Batista M, Diaz-Asencio M (2011) Heavy metal content of bottom ashes from a fuel oil power plant and oil refinery in Cuba. Fuel 90:2820–2823. doi:10.1016/j.fuel.2011.03.014 CrossRef Alonso-Hernández CM, Bernal-Castillo J, Bolaños-Alvarez Y, Gómez-Batista M, Diaz-Asencio M (2011) Heavy metal content of bottom ashes from a fuel oil power plant and oil refinery in Cuba. Fuel 90:2820–2823. doi:10.​1016/​j.​fuel.​2011.​03.​014 CrossRef
Zurück zum Zitat Chacon D, Giner ME, Vazquez M, Roe S, Maldonado JA, Lindquist H, Strode B, Anderson R, Quiroz C, Schreiber J (2010) Greenhouse gas emissions in Baja California and reference case projections 1990–2025, 1a edn. Comision de Cooperacion Ecologica Fronteriza and Border Environment Cooperation Commission, Texas, pp 46–49 Chacon D, Giner ME, Vazquez M, Roe S, Maldonado JA, Lindquist H, Strode B, Anderson R, Quiroz C, Schreiber J (2010) Greenhouse gas emissions in Baja California and reference case projections 1990–2025, 1a edn. Comision de Cooperacion Ecologica Fronteriza and Border Environment Cooperation Commission, Texas, pp 46–49
Zurück zum Zitat CONCAWE (1998) Heavy fuel oils. CONCAWE's, Product dossier no. 98/109. Brussels, Belgium CONCAWE (1998) Heavy fuel oils. CONCAWE's, Product dossier no. 98/109. Brussels, Belgium
Zurück zum Zitat Ćujić M, Dragović S, Đorđević M, Dragović R, Gajić B (2017) Environmental assessment of heavy metals around the largest coal fired power plant in Serbia. CATENA 148:26–34CrossRef Ćujić M, Dragović S, Đorđević M, Dragović R, Gajić B (2017) Environmental assessment of heavy metals around the largest coal fired power plant in Serbia. CATENA 148:26–34CrossRef
Zurück zum Zitat Diego-Marin A, Salinas-Bravo VM, Porcayo-C J (2001) Uso de crudo maya despuntado como combustible alterno al combustóleo (the use of Maya crude as an alternative to fuel oil). Instituto Nacional de Electricidad y Energía Limpias (INEEL), Secretaría de energía (SENER)/Boletín IIE 25(3):126–230. https://www.ineel.mx/2001c/tenden.pdf. Accessed 17 April 2017 Diego-Marin A, Salinas-Bravo VM, Porcayo-C J (2001) Uso de crudo maya despuntado como combustible alterno al combustóleo (the use of Maya crude as an alternative to fuel oil). Instituto Nacional de Electricidad y Energía Limpias (INEEL), Secretaría de energía (SENER)/Boletín IIE 25(3):126–230. https://​www.​ineel.​mx/​2001c/​tenden.​pdf. Accessed 17 April 2017
Zurück zum Zitat Förstner U, Ahlf W, Calmano W, Kersten M (1990) Sediment criteria development. In: Heling D, Rothe P, Förstner U, Stoffers P (eds) Sediment and environmental geochemistry. Springer, Berlin Heidelberg, pp 311–338CrossRef Förstner U, Ahlf W, Calmano W, Kersten M (1990) Sediment criteria development. In: Heling D, Rothe P, Förstner U, Stoffers P (eds) Sediment and environmental geochemistry. Springer, Berlin Heidelberg, pp 311–338CrossRef
Zurück zum Zitat Ganor E, Altshuller S, Foner HA, Brenner S, Gabbay J (1988) Vanadium and nickel in dustfall as indicators of power plant pollution. Water Air Soil Poll 42:241–252. doi:10.1007/BF00279270 Ganor E, Altshuller S, Foner HA, Brenner S, Gabbay J (1988) Vanadium and nickel in dustfall as indicators of power plant pollution. Water Air Soil Poll 42:241–252. doi:10.​1007/​BF00279270
Zurück zum Zitat Hinkle D, Wiersma W, Jurs S (2003) Applied statistics for the behavioral sciences, 5th edn. Houghton Mifflin Co., Boston Hinkle D, Wiersma W, Jurs S (2003) Applied statistics for the behavioral sciences, 5th edn. Houghton Mifflin Co., Boston
Zurück zum Zitat Lario J, Alonso-Azcárate J, Spencer C, Zazo C, Goy JL, Cabero A, Dabrio CJ, Borja F, Borja C, Civis J, García-Ródriguez M (2016) Evolution of the pollution in the Piedras River Natural Site (Gulf of Cadiz, southern Spain) during the Holocene. Environ Earth Sci 75:481. doi:10.1007/s12665-016-5344-8 CrossRef Lario J, Alonso-Azcárate J, Spencer C, Zazo C, Goy JL, Cabero A, Dabrio CJ, Borja F, Borja C, Civis J, García-Ródriguez M (2016) Evolution of the pollution in the Piedras River Natural Site (Gulf of Cadiz, southern Spain) during the Holocene. Environ Earth Sci 75:481. doi:10.​1007/​s12665-016-5344-8 CrossRef
Zurück zum Zitat Lu X, Liu W, Zhao C, Chen C (2013) Environmental assessment of heavy metal and natural radioactivity in soil around a coal-fired power plant in China. J Radioanal Nucl Chem 295:1845–1854. doi:10.1007/s10967-012-2241-9 CrossRef Lu X, Liu W, Zhao C, Chen C (2013) Environmental assessment of heavy metal and natural radioactivity in soil around a coal-fired power plant in China. J Radioanal Nucl Chem 295:1845–1854. doi:10.​1007/​s10967-012-2241-9 CrossRef
Zurück zum Zitat Machado A, García N, García C, Acosta L, Córdova A, Linares M, Giraldoth D, Velasquez H (2008) Contaminación por metales (Pb, Zn, Ni y Cr) en aire, sedimentos viales y suelo en una zona de alto tráfico vehicular. Rev Int Contam Ambie 24(4):171–182 (issn: 0188-4999) Machado A, García N, García C, Acosta L, Córdova A, Linares M, Giraldoth D, Velasquez H (2008) Contaminación por metales (Pb, Zn, Ni y Cr) en aire, sedimentos viales y suelo en una zona de alto tráfico vehicular. Rev Int Contam Ambie 24(4):171–182 (issn: 0188-4999)
Zurück zum Zitat Mirsal IA (2004) Sources of soil pollution. In: Mirsal IA (ed) Soil pollution: origin, monitoring and remediation, 3rd edn. Springer, Berlin, Heidelberg, pp 147–149CrossRef Mirsal IA (2004) Sources of soil pollution. In: Mirsal IA (ed) Soil pollution: origin, monitoring and remediation, 3rd edn. Springer, Berlin, Heidelberg, pp 147–149CrossRef
Zurück zum Zitat Muller G (1969) Index of geoaccumulation in sediments of Rhine River. Geol J 2(3):108–118 Muller G (1969) Index of geoaccumulation in sediments of Rhine River. Geol J 2(3):108–118
Zurück zum Zitat Naja GM, Volesky B (2002) Toxicity and Sources of Pb, Cd, Hg, Cr, As, and radionuclides in the environment. In: Nazih K, Shammas YH, Jiaping PC, Wang LK (eds) Heavy metals in the environment. CRC Press, Marcel Dekker, Inc., Ottawa, pp 14–18 Naja GM, Volesky B (2002) Toxicity and Sources of Pb, Cd, Hg, Cr, As, and radionuclides in the environment. In: Nazih K, Shammas YH, Jiaping PC, Wang LK (eds) Heavy metals in the environment. CRC Press, Marcel Dekker, Inc., Ottawa, pp 14–18
Zurück zum Zitat Nanos N, Grigoratos T, Rodríguez Martín JA, Samara C (2015) Scale-dependent correlations between soil heavy metals and as around four coal-fired power plants of northern Greece. Stoch Environ Res Risk Assess 29:1531–1543. doi:10.1007/s00477-014-0991-3 CrossRef Nanos N, Grigoratos T, Rodríguez Martín JA, Samara C (2015) Scale-dependent correlations between soil heavy metals and as around four coal-fired power plants of northern Greece. Stoch Environ Res Risk Assess 29:1531–1543. doi:10.​1007/​s00477-014-0991-3 CrossRef
Zurück zum Zitat Nava-Martinez E, Garcia-Flores E, Espinoza-Gomez H, Wakida FT (2012) Heavy metals pollution in the soil of an irregular urban settlement built on a former dumpsite in the city of Tijuana, Mexico. Environ Earth Sci 66:1239–1335. doi:10.1007/s12665-011-1335-y CrossRef Nava-Martinez E, Garcia-Flores E, Espinoza-Gomez H, Wakida FT (2012) Heavy metals pollution in the soil of an irregular urban settlement built on a former dumpsite in the city of Tijuana, Mexico. Environ Earth Sci 66:1239–1335. doi:10.​1007/​s12665-011-1335-y CrossRef
Zurück zum Zitat Navarro R, Guzman J, Saucedo I, Revilla J, Guibal E (2007) Vanadium recovery from oil fly ash by leaching, precipitation and solvent extraction processes. Waste Manag 27:425–438CrossRef Navarro R, Guzman J, Saucedo I, Revilla J, Guibal E (2007) Vanadium recovery from oil fly ash by leaching, precipitation and solvent extraction processes. Waste Manag 27:425–438CrossRef
Zurück zum Zitat Pastrana-Corral MA, Wakida FT, García-Flores E, Rodriguez-Mendivil DD, Quiñonez-Plaza A, Piñon-Colin TDJ (2016) Soil mercury levels in the area surrounding the Cerro Prieto geothermal complex, Mexico. Environ Monit Assess 188:466. doi:10.1007/s10661-016-5474-1 CrossRef Pastrana-Corral MA, Wakida FT, García-Flores E, Rodriguez-Mendivil DD, Quiñonez-Plaza A, Piñon-Colin TDJ (2016) Soil mercury levels in the area surrounding the Cerro Prieto geothermal complex, Mexico. Environ Monit Assess 188:466. doi:10.​1007/​s10661-016-5474-1 CrossRef
Zurück zum Zitat Quiñonez-Plaza A, Wakida FT, Temores-Peña J, Rodriguez-Mendivil DD, Garcia-Flores E, Pastrana-Corral MA, Melendez-Lopez SG (2017) Total petroleum hydrocarbons and heavy metals in road-deposited sediments in Tijuana. J Soils Sedim, Mexico. doi:10.1007/s11368-017-1778-1 Quiñonez-Plaza A, Wakida FT, Temores-Peña J, Rodriguez-Mendivil DD, Garcia-Flores E, Pastrana-Corral MA, Melendez-Lopez SG (2017) Total petroleum hydrocarbons and heavy metals in road-deposited sediments in Tijuana. J Soils Sedim, Mexico. doi:10.​1007/​s11368-017-1778-1
Zurück zum Zitat Rowell DL (1994) Soil science: methods and applications. Addison, Wesley, London Rowell DL (1994) Soil science: methods and applications. Addison, Wesley, London
Zurück zum Zitat Stafilov T (2014) Environmental pollution with heavy metals in the Republic of Macedonia. Contrib Maced Acad Sci Arts Sect Nat Math Biotech Sci 35(2):81–119 Stafilov T (2014) Environmental pollution with heavy metals in the Republic of Macedonia. Contrib Maced Acad Sci Arts Sect Nat Math Biotech Sci 35(2):81–119
Zurück zum Zitat Vasić MV, Mihailović A, Kozmidis-Luburić U, Nemes T, Ninkov J, Zeremski-Škorić T, Antić B (2012) Metal contamination of short-term snow cover near urban crossroads: correlation analysis of metal content and fine particles distribution. Chemosphere 86:585–592. doi:10.1016/j.chemosphere.2011.10.023 CrossRef Vasić MV, Mihailović A, Kozmidis-Luburić U, Nemes T, Ninkov J, Zeremski-Škorić T, Antić B (2012) Metal contamination of short-term snow cover near urban crossroads: correlation analysis of metal content and fine particles distribution. Chemosphere 86:585–592. doi:10.​1016/​j.​chemosphere.​2011.​10.​023 CrossRef
Zurück zum Zitat Walkley A, Black IA (1934) An examination of the Degtjareff method for determining organic carbon in soils: effect of variations in digestion conditions and of inorganic soil constituents. Soil Sci 63:251–263CrossRef Walkley A, Black IA (1934) An examination of the Degtjareff method for determining organic carbon in soils: effect of variations in digestion conditions and of inorganic soil constituents. Soil Sci 63:251–263CrossRef
Zurück zum Zitat Wuana RA, Okieimen FE (2011) Heavy metals in contaminated soils: a review of sources, chemistry, risks and best available strategies for remediation. Int Sch Res 2011:1–20. doi:10.5402/2011/402647 Wuana RA, Okieimen FE (2011) Heavy metals in contaminated soils: a review of sources, chemistry, risks and best available strategies for remediation. Int Sch Res 2011:1–20. doi:10.​5402/​2011/​402647
Zurück zum Zitat Yaron B, Dror I, Berkowitz B (2012) Soil-subsurface change: chemical pollutant impacts. Springer, BerlinCrossRef Yaron B, Dror I, Berkowitz B (2012) Soil-subsurface change: chemical pollutant impacts. Springer, BerlinCrossRef
Zurück zum Zitat Zhang J, Liu CL (2002) Riverine composition and estuarine geochemistry of particulate metals in China—weathering features, anthropogenic impact and chemical fluxes. Estuar Coast Shelf Sci 54:1051–1070. doi:10.1006/ecss.2001.0879 CrossRef Zhang J, Liu CL (2002) Riverine composition and estuarine geochemistry of particulate metals in China—weathering features, anthropogenic impact and chemical fluxes. Estuar Coast Shelf Sci 54:1051–1070. doi:10.​1006/​ecss.​2001.​0879 CrossRef
Metadaten
Titel
Heavy metal pollution in the soil surrounding a thermal power plant in Playas de Rosarito, Mexico
verfasst von
M. A. Pastrana-Corral
F. T. Wakida
J. Temores-Peña
D. D. Rodriguez-Mendivil
E. García-Flores
T. D. J. Piñon-Colin
A. Quiñonez-Plaza
Publikationsdatum
01.08.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
Environmental Earth Sciences / Ausgabe 16/2017
Print ISSN: 1866-6280
Elektronische ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-017-6928-7

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