Szerves szennyezőanyagok talajbeli megkötődésének előrejelzése a talajok fizikai-kémiai paraméterei alapján

Authors

Keywords:

humic substances, anthracene, phenantrene, benzene, diuron, soil solution, adsorption

Abstract

The aim of this study was to examine the way soils’ humic substances may influence the adsorption of various organic pollutants. We chose anthracene and phenanthrene, benzene and diuron as model-compounds. We investigated the amount adsorbed from these compounds on different types of soils and on humic substances extracted from them. From the results of our research it can be concluded that the inorganic constituents of soils play also an important role in the adsorption of apolar compounds. However, in the case of polar pollutants, the humic substances of soils play increasing role - up to dominant one – due to their polar functional groups. Desorption of polar pollutants may be more substantial than of the apolar compounds, due of the polar character of the soil solution. Therefore, although the binding of the latter one is weaker, the equilibrium will be reached at a lower adsorption rate in the case of polar compounds, due to the different rates of desorption processes.

Author Biography

  • Katalin Lányi, Állatorvostudományi Egyetem, Élelmiszer-higiéniai Tanszék, 1078 Budapest, István u. 2.

    corresponding author
    lanyi.katalin@univet.hu 

References

Ahangar, A. 2010. Sorption of PAHs in the Soil Environment with Emphasis on the Role of Soil Organic Matter: A Review, World Applied Sciences Journal. 11 (7) 759–765.

Arias-Estévez, M., López-Periago, E., Martínez-Carballo, E., Simal-Gándara, J., Mejuto, J. C., García-Río, L. 2008. The mobility and degradation of pesticides in soils and the pollution of groundwater resources. Agriculture, Ecosystems & Environment. 123 (4) 247–260. https://doi.org/10.1016/j.agee.2007.07.011

IHSS (n.d.) 2017. IHSS International Humic Substances Society. [online] Available from: http://humic-substances.org/ (Accessed 7 December 2017).

Keesstra, S. D., Geissen, V., Mosse, K., Piiranen, S., Scudiero, E., Leistra, M., van Schaik, L. 2012. Soil as a filter for groundwater quality. Current Opinion in Environmental Sustainability. 4 (5) 507–516. https://doi.org/10.1016/j.cosust.2012.10.007

Lányi, K. 2005. Assessment of the relations between the spectroscopic characteristics of soils and their ability to adsorb organic pollutants. Microchemical Journal. 79 (1–2) 249–256. https://doi.org/10.1016/j.microc.2004.08.008

Morillo, E., Romero, A. S., Maqueda, C., Madrid, L., Ajmone-Marsan, F., Grcman, H., Davidson, C. M., Hursthouse, A. S., Villaverde, J. 2007. Soil pollution by PAHs in urban soils: a comparison of three European cities. Journal of Environmental Monitoring. 9 (9) 1001–1008. https://doi.org/10.1039/b705955h

Nam, J. J., Gustafsson, O., Kurt-Karakus, P., Breivik, K., Steinnes, E., Jones, K. C. 2008. Relationships between organic matter, black carbon and persistent organic pollutants in European background soils: Implications for sources and environmental fate. Environmental Pollution. 156 (3) 809–817. https://doi.org/10.1016/j.envpol.2008.05.027

Salomons, W., Stigliani, W. M. (eds.) 1995. Biogeodynamics of pollutants in soils and sediments. Berlin, Heidelberg, Springer Berlin Heidelberg. https://doi.org/10.1007/978-3-642-79418-6

Semple, K. T., Doick, K. J., Wick, L. Y., Harms, H. 2007. Microbial interactions with organic contaminants in soil: definitions, processes and measurement. Environmental Pollution. 150 (1) 166–176. https://doi.org/10.1016/j.envpol.2007.07.023

Stefanovits P., Filep Gy., Füleky Gy. 1999. Talajtan. Budapest, Mezőgazda Kiadó.

Zhang, X., Wang, H., He, L., Lu, K., Sarmah, A., Li, J., Bolan, N. S., Pei, J., Huang, H. 2013. Using biochar for remediation of soils contaminated with heavy metals and organic pollutants. Environmental Science and Pollution Research International. 20 (12) 8472–8483. https://doi.org/10.1007/s11356-013-1659-0

Published

2018-03-07

How to Cite

Lányi, K., Laczay , P., Szabó, R., & Lehel, J. (2018). Szerves szennyezőanyagok talajbeli megkötődésének előrejelzése a talajok fizikai-kémiai paraméterei alapján. GEORGIKON FOR AGRICULTURE, 22(1), 136-141. https://journal.uni-mate.hu/index.php/gfa/article/view/6663

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