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SPATIAL DISTRIBUTION OF AS IN URBAN AND PERIURBAN SOILS OF THE CITY OL OF URBAN AND PERIURBAN AREA OF CITY OF IASI

Sirbu-Radasanu, Doina Smaranda, Huzum, Ramona, Iftode, Simona Petronela, Buzatu, Andrei, Buzgar, Nicolae

First published: 2015https://doi.org/10.5593/sgem2015/b32/s13.042View metrics

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Title
SPATIAL DISTRIBUTION OF AS IN URBAN AND PERIURBAN SOILS OF THE CITY OL OF URBAN AND PERIURBAN AREA OF CITY OF IASI
Authors
Sirbu-Radasanu, Doina Smaranda, Huzum, Ramona, Iftode, Simona Petronela, Buzatu, Andrei, Buzgar, Nicolae
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 15th International Multidisciplinary Scientific GeoConference SGEM2015, WATER RESOURCES. FOREST, MARINE AND OCEAN ECOSYSTEMS
Publisher
Stef92 Technology
Year
2015
Pages
309-316
ISSN
1314-2704
ISBN
978-619-7105-37-7
Language
en
Publication type
Conference Paper
References30
  1. Kabata – Pendias A., Trace Elements in Soils and Plants. Fourth Edition, Taylor and Francis Group, LLC., 505 p, 2011.

  2. Goh K.H. & Lim T.T., Arsenic fractionation in a fine soil fraction and influence of various anions on its mobility in the subsurface environment, Applie d Geochemistry, 20, pp. 229-239, 2005.

  3. Giacomino A., Malandrino M., Abollino O., Velayutham M., Chinnathangavel T., Mentasti E., An approach for arsenic in a contaminated soil: Speciation, International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org Section Soils fractionation, extraction and effluent decontamination, Environmental Pollution, 158, pp. 416–423, 2010.

  4. Tarvainen T., Albanese S., Birke M, Ponavic M, Reimann C, The GEMAS Project Team, Arsenic in agricultural and grazing land soils of Europe, Applied Geochemistry, 28, pp. 2-10, 2013.

  5. Reimann C., Matschullat J., Birke M., Salminen R., Arsenic distribution in the environment: the effects of scale, Applied Geochemistry, 24, pp. 1147 – 1167, 2009.

  6. Iancu O.G. & Buzgar N., Eds., The geochemical atlas of heavy metals in the soils of the municipality of Iasi and its surrounding areas, “Al. I. Cuza” University, Editorial Press, 48 p., 2008.

  7. www.openstreetmap.org

  8. Zhang, C., Using multivariate analyses and GIS to identify pollutants and their spatial patterns in urban soils in Galway, Ireland, Environmental Pollution 142, pp. 501–511, 2006.

  9. Brimhall, G. H. & Dietrich, W. E., Constitutive mass balance relations between chemical composition, volume, density, porosity, and strain in metosomatic hydrochemical systems: results on weathering and pedogenesis, Geochimica et Cosmochimica Acta, 51, 3, pp. 567–587, 1987.

  10. Jin, L., Ravella, R., Ketchum, B., Bieman, P.R., Heaney, P., White, T. & Brantley, S.L., Mineral weathering and elemental transport during hillslope evolution at the Susquehanna/Shale Hills Critical Zone Observatory, Geochimica et Cosmochimica Acta, 74, 13, pp. 3669–3691, 2010.

  11. Sirbu-Radasanu D.S.& Buzgar N., The geochemistry of major and selected trace elements in soil from northern area of Iasi city (Romania), Carpathian Journal of Earth and Environmental Sciences, 8, 4, pp. 63-74, 2013.

  12. Papastergios G., Filippidis A., Fernandez-Turiel J.L., Gimeno D., Sikalidis C., Surface Soil Geochemistry for Environmental Assessment in Kavala Area, Northern Greece, Water Air Soil Pollution, 216, pp. 141–152, 2011.

  13. Curcã G., Geochemical study of solid pollutants from the atmosphere of the industrial areas of the city of Iasi mainly concerning the distribution of heavy metals, PhD. Thesis abstract (in Romanian), on-line, 2011. http://www.unibuc.ro/facultati/geologie-geofizica/scoa-doct/rezumate- TEZE/docs/2012/feb/12_09_04_1513_12_24_46CURCA_GEANINA_2011.pdf

  14. Galan E., Gonzalez I., Romero A., Aparicio P., A methodological approach to estimate the geogenic contribution in soils potentially polluted by trace elements, Application to a case study, Journal of Soils and Sediments, Potentially Harmful Elements in Soil-Plant Interactions, 14, pp. 810–818, 2014.

  15. Hakanson L., An ecological index for aquatic pollution control. A sedimentological approach, Water Research, 14, 8, pp 975-1001, 1980. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific GeoConferences SGEM2015 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

  16. Kabata – Pendias A., Trace Elements in Soils and Plants. Fourth Edition, Taylor and Francis Group, LLC., 505 p, 2011.

  17. Goh K.H. & Lim T.T., Arsenic fractionation in a fine soil fraction and influence of various anions on its mobility in the subsurface environment, Applie d Geochemistry, 20, pp. 229-239, 2005.

  18. Giacomino A., Malandrino M., Abollino O., Velayutham M., Chinnathangavel T., Mentasti E., An approach for arsenic in a contaminated soil: Speciation, International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org Section Soils fractionation, extraction and effluent decontamination, Environmental Pollution, 158, pp. 416–423, 2010.

  19. Tarvainen T., Albanese S., Birke M, Ponavic M, Reimann C, The GEMAS Project Team, Arsenic in agricultural and grazing land soils of Europe, Applied Geochemistry, 28, pp. 2-10, 2013.

  20. Reimann C., Matschullat J., Birke M., Salminen R., Arsenic distribution in the environment: the effects of scale, Applied Geochemistry, 24, pp. 1147 – 1167, 2009.

  21. Iancu O.G. & Buzgar N., Eds., The geochemical atlas of heavy metals in the soils of the municipality of Iasi and its surrounding areas, “Al. I. Cuza” University, Editorial Press, 48 p., 2008.

  22. www.openstreetmap.org

  23. Zhang, C., Using multivariate analyses and GIS to identify pollutants and their spatial patterns in urban soils in Galway, Ireland, Environmental Pollution 142, pp. 501–511, 2006.

  24. Brimhall, G. H. & Dietrich, W. E., Constitutive mass balance relations between chemical composition, volume, density, porosity, and strain in metosomatic hydrochemical systems: results on weathering and pedogenesis, Geochimica et Cosmochimica Acta, 51, 3, pp. 567–587, 1987.

  25. Jin, L., Ravella, R., Ketchum, B., Bieman, P.R., Heaney, P., White, T. & Brantley, S.L., Mineral weathering and elemental transport during hillslope evolution at the Susquehanna/Shale Hills Critical Zone Observatory, Geochimica et Cosmochimica Acta, 74, 13, pp. 3669–3691, 2010.

  26. Sirbu-Radasanu D.S.& Buzgar N., The geochemistry of major and selected trace elements in soil from northern area of Iasi city (Romania), Carpathian Journal of Earth and Environmental Sciences, 8, 4, pp. 63-74, 2013.

  27. Papastergios G., Filippidis A., Fernandez-Turiel J.L., Gimeno D., Sikalidis C., Surface Soil Geochemistry for Environmental Assessment in Kavala Area, Northern Greece, Water Air Soil Pollution, 216, pp. 141–152, 2011.

  28. Curcã G., Geochemical study of solid pollutants from the atmosphere of the industrial areas of the city of Iasi mainly concerning the distribution of heavy metals, PhD. Thesis abstract (in Romanian), on-line, 2011. http://www.unibuc.ro/facultati/geologie-geofizica/scoa-doct/rezumate- TEZE/docs/2012/feb/12_09_04_1513_12_24_46CURCA_GEANINA_2011.pdf

  29. Galan E., Gonzalez I., Romero A., Aparicio P., A methodological approach to estimate the geogenic contribution in soils potentially polluted by trace elements, Application to a case study, Journal of Soils and Sediments, Potentially Harmful Elements in Soil-Plant Interactions, 14, pp. 810–818, 2014.

  30. Hakanson L., An ecological index for aquatic pollution control. A sedimentological approach, Water Research, 14, 8, pp 975-1001, 1980. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific GeoConferences SGEM2015 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

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