| Literature DB >> 19924073 |
Marta Markiewicz1, Christian Jungnickel, Aleksandra Markowska, Urszula Szczepaniak, Monika Paszkiewicz, Jan Hupka.
Abstract
Ionic liquids (ILs) are known to be non-volatile and thus to have low potential for atmospheric contamination or intoxication of humans by inhalation. However ILs have the potential to contaminate soil and water as they might be water soluble and can be sorbed onto solids. The investigation of possible natural ways of reducing the concentration of ILs in the environment is of high importance, especially because the requirement for biodegradable chemicals increases, together with pressure for reduction of incineration and landfill waste. It was found that the upper concentration threshold for primary biodegradation of 1-methyl-3-octylimidazolium chloride is 0.2 mM. At higher concentrations the dehydrogenase activity of the cells dropped markedly, indicating that the IL inhibits cell activity. This concentration is in good agreement with the minimal inhibitory concentration of the same compound found for a series of bacteria and fungi by this research group. The sorption of 1-methyl-3-octylimidazolium chloride was found to be significant, and the sorption coefficient was determined to be 98.2 L kg(-1).Entities:
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Year: 2009 PMID: 19924073 PMCID: PMC6254910 DOI: 10.3390/molecules14114396
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Concentration of [OMIM][Cl] in the biodegradation experiments shown in (a) with initial concentration of 150, 75, and 30 mM; (b) with initial concentration of 3, and 2 mM; (c) with initial concentration of 0.2 and 0.02 mM. The dashed line indicates the time period at which complete biodegradation has occurred. The positive control of 0.2 mM sodium benzoate is shown as a comparison. An exemplary negative control is indicated in (c).
Figure 2Sorption isotherm of [OMIM][Cl] on sewage sludge flocs. The data points were determined from the equilibrium concentrations of the biodegradation experiments.
Figure 3Dehydrogenase activity in six experiments, including blank, positive control with 2 mM glucose shown as µg of TF per g dry mass of flocs.