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Bioaccumulation of 1-butyl-3-methylimidazolium chloride ionic liquid in a simple marine trophic chain

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This study focused on the bioaccumulation intensities of the ionic liquid (IL) 1-butyl-3-methylimidazolium chloride (bmimCl) by two invertebrates: Mytilus trossulus and Balanus improvisus and the green alga Chlorella vulgaris. The bioconcentration of bmimCl by two invertebrates was tested in the contaminated water, both with and without the presence of green algae previously exposed to the bmimCl. The experimentally obtained bioconcentration factors (BCFs) are quite low and do not exceed the value of 10. The presence of contaminated C. vulgaris in the water induces an increase in BCF of barnacles up to 80% in comparison to barnacles exposed only to contaminated water. Detoxication of M. trossulus may be more effective in the presence of higher IL concentrations. BCFs for hard tissues of the mussel indicates an exclusively physical sorption mechanism on the mineral surface.
Rocznik
Strony
149--154
Opis fizyczny
Bibliogr. 23 poz., tab.
Twórcy
autor
autor
Bibliografia
  • 1.Baumard, P., Budzinski, H., Garrigues, P., Dizer, H., Hansen P.D. (1999). Polycyclic aromatic hydrocarbons in recent sediments and mussels (Mytilus trossulus) from the Western Baltic Sea: occurrence, bioavailability and seasonal variations. Marine Environmental Research, 47(1): 17-47.
  • 2.Bernot, R.J., Brueseke, M.A., Evans-White, M.A., Lamberti, G.A. (2005). Acute and chronic toxicity of imidazolium-based ionic liquids on Daphnia magna. Environ. Toxicol. Chem., 24: 87-92.
  • 3.Cornmell, R.J., Wiader, C.L., Tiddy, J.T., Goodacre, R., Stephens, G. (2008). Accumulation of ionic liquids in Escherichia coli cells. Green Chem., 10: 836-841.
  • 4.Geyer, H., Sheehan, P., Kotzias, D., Freitag, D., Korte, F. (1982). Prediction of ecotoxicological behavior of chemicals: relationship between physico-chemical properties and bioaccumulation of organic chemicals in the mussel Mytilus edulis. Chemosphere, 11: 1121-1134.
  • 5.Guillard, R.R.L. (1975). Culture of phytoplankton for feeding marine invertebrates. In: Smith, W.L., Chanle, M.N. (Eds.) Culture of marine invertebrate animals, Plenum Press, New York, pp. 29-60.
  • 6.Latała, A. (2003). Autecological characteristic of some algal strains from Culture Collection of Baltic Algae (CCBA). In: Lima, N., Smith, D., (Eds.) Biological Resource Centers and the Use of Microbes, Micoteca da Universidade do Minho, Braga, Portugal, pp. 323-345.
  • 7.Latała, A., Stepnowski, P., Nędzi, M., Mrozik, W. (2005). Marine toxicity assessment of imidazolium ionic liquids: acute effects on the Baltic algae (Oocystis submarina) and (Cyclotella meneghiniana). Aquatic Toxicol., 73: 91-98 .
  • 8.Latała, A., Jodłowska, S., Pniewski, F. (2006). Culture Collection of Baltic Algae (CCBA) and characteristic of some strains by factorial experiment approach - Archiv für Hydrobiologie, 165, Algological Studies, 122: 137-154.
  • 9.Latała, A., Nędzi, M., Stepnowski, P. (2009a). Toxicity of imidazolium and pyridinium based ionic liquids towards algae. Chlorella vulgaris, Oocystis submarina (phytoplankton green algae) and Cyclotella meneghiniana, Skeletonema marinoi (diatoms), Green Chem., 11: 580-588.
  • 10.Latała, A., Nędzi, M., Stepnowski, P. (2009b). Toxicity of imidazolium and pyridinium based ionic liquids towards algae. Bacillaria paxillifer (a microphytobenthic diatom) and Geitlerinema amphibium (a microphytobenthic blue green alga), Green Chem., 11: 1371-1376 .
  • 11.Matzke, M., Stolte, S., Arning, J., Uebers, U., Filser, J. (2009). Ionic liquids in soils: effects of different anion species of imidazolium based ionic liquids on wheat (Triticum aestivum) as affected by different clay minerals and clay concentrations. Ecotoxicology, 18: 197-203 .
  • 12.Meylan, W.M., Howard, P.H., Boethling, R.S., Aronson, D., Printup, H., Gouchie, S. (1999). Improved method for estimating bioconcentration/bioaccumulation factor from octanol/water partition coefficient. Environ. Toxicol. Chem., 18: 664-672 .
  • 13.Mrozik, W., Jungnickel, C., Skup, M., Urbaszek, P., Stepnowski, P. (2008). Determination of the adsorption mechanism of imidazolium-type ionic liquids onto kaolinite: implications for their fate and transport in the soil environment. Environ. Chem., 5: 299-306 .
  • 14.Nichthauser, J., Paszkiewicz, M., Składanowski, A.C., Stepnowski, P. (2008). Simplex-optimized chromatographic resolution of selected ionic liquid cations utilizing a polar reversed phase system. Anal. Sci., 24: 1355-1358 .
  • 15.Nichthauser, J., Mrozik, W., Markowska, A., Stepnowski, P. (2009). Analysis of residual ionic liquids in environmental samples: development of extraction methods. Chemosphere, 74: 515-521 .
  • 16.Olszewska, A. (1999) The occurrence of Balanus improvisus Darwin on Cerastoderma glaucum Poiret and other bivalves in the Polish zone of the Baltic. Oceanologia, 41(4): 609-612.
  • 17.Rainbow, P.S., Fiałkowski, W., Sokołowski, A., Smith, B.D., Wołowicz, M. (2004). Geographical and seasonal variation of trace metal bioavailabilities in the Gulf of Gdansk, Baltic Sea using mussels (Mytilus trossulus) and barnacles (Balanus improvisus) as biomonitors. Mar. Biol., 144: 271-286 .
  • 18.Stasiewicz, M., Mulkiewicz, E., Tomczak-Wandzel, R., Kumirska, J., Siedlecka, E.M., Gołębiowski, M., Gajdus, J., Czerwicka, M., Stepnowski, P. (2008). Assessing toxicity and biodegradation of novel, environmentally benign ionic liquids (1-alkoxymethyl-3-hydroxypyridinium chlorides, saccharinates and acesulfamates) on cellular and molecular level. Ecotox. Environ. Safe., 71: 157-165 .
  • 19.Stepnowski, P., & Mrozik, W. (2005). Analysis of selected ionic liquid cations by ion exchange chromatography and reversed-phase high performance liquid chromatography. J Sep. Sci., 28: 149-154 .
  • 20.Stepnowski, P. & Storoniak, P. (2005). Lipophilicity and metabolic route prediction of imidazolium ionic liquids. Environ. Sci. Poll. Res., 12: 199-204 .
  • 21.Stepnowski, P. (2007). Sorption, lipophilicity and partitioning phenomena of ionic liquids in environmental systems. In: T.M. Letcher (Ed.) Thermodynamics, Solubility and Environmental Issues, Elsevier B.V.
  • 22.Stepnowski, P. & Nichthauser, J. (2008). Ion-pair solid-phase extraction of trace amounts of ionic liquid cations in sea and freshwater samples, Anal. Sci., 24: 1255-1259 .
  • 23.Wasserscheid, P. & Welton T. (2008). Ionic liquids in synthesis, 2nd ed., Wiley VGH, Weinheim.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0029-0049
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