Mrozik Wojciech, Jungnickel Christian, Paszkiewicz Monika, Stepnowski Piotr
School of Civil Engineering and Geoscience, Newcastle University, Newcastle upon Tyne, NE3 7RU UK ; Department of Inorganic Chemistry, Faculty of Pharmacy, Medical University of Gdańsk, al. Gen. J. Hallera 107, Gdańsk, 80-470 Poland.
Department of Chemical Technology, Faculty of Chemistry, Gdańsk University of Technology, ul. Narutowicza 11/12, Gdańsk, 80-233 Poland.
Water Air Soil Pollut. 2013;224(11):1759. doi: 10.1007/s11270-013-1759-y. Epub 2013 Oct 13.
With the constant development of new ionic liquids, the understanding of the chemical fate of these compounds also needs to be updated. To this effect, the interaction of a number of novel ionic liquids with soils was determined. Therefore, three novel headgroups (ammonium, phosphonium, or pyrrolidinium) with single or quaternary substitution were tested on a variety of soils with high-to-low organic matter content and high-to-low cation exchange capacity, thereby trying to capture the full range of possible soil interactions. It was found that the ionic liquids with single butyl alkyl chain interacted more strongly with the soils (especially with a higher cation exchange capacity), at lower concentrations, than the quad-substituted ionic liquids. However, the quad-substituted ionic liquids interacted more strongly at higher concentrations, due to the double-layer formation, and induced stronger dipole interaction with previously sorbed molecules.
随着新型离子液体的不断发展,对这些化合物化学归宿的认识也需要更新。为此,测定了多种新型离子液体与土壤的相互作用。因此,在具有高到低有机质含量和高到低阳离子交换容量的多种土壤上测试了具有单取代或季取代的三种新型头基(铵、鏻或吡咯烷鎓),从而试图涵盖所有可能的土壤相互作用情况。结果发现,具有单丁基烷基链的离子液体在较低浓度下与土壤(特别是阳离子交换容量较高的土壤)的相互作用比四取代离子液体更强。然而,由于双层的形成,四取代离子液体在较高浓度下相互作用更强,并与先前吸附的分子诱导更强的偶极相互作用。