Lanthanum from a Modified Clay Used in Eutrophication Control Is Bioavailable to the Marbled Crayfish (Procambarus fallax f. virginalis)

作者:van Oosterhout Frank*; Goitom Eyerusalem; Roessink Ivo; Lurling Miquel
来源:PLos One, 2014, 9(7): e102410.
DOI:10.1371/journal.pone.0102410

摘要

To mitigate eutrophication in fresh standing waters the focus is on phosphorus (P) control, i.e. on P inflows to a lake as well as a lake%26apos;s sediment as internal P source. The in-lake application of the lanthanum (La) modified clays - i.e. La modified bentonite (Phoslock) or La modified kaolinite, aim at dephosphatising the water column and at reducing the release of P from a lake%26apos;s sediment. Application of these clays raises the question whether La from these clays can become bioavailable to biota. We investigated the bioavailability of La from Phoslock in a controlled parallel groups experiment in which we measured the La in carapace, gills, ovaries, hepatopancreas and abdominal muscle after 0, 14 and 28 days of exposure to Phoslock. Expressing the treatment effect as the difference of the median concentration between the two treatment groups (Phoslock minus control group) yield the following effects, the plus sign (+) indicating an increase, concentrations in mu g g(-1) dry weight: Day 14: carapace +10.5 mu g g(-1), gills +112 mu g g(-1), ovaries +2.6 mu g g(-1), hepatopancreas +32.9 mu g g(-1) and abodminal muscle +3.2 mu g g(-1). Day 28: carapace +17.9 mu g g(-1); gills +182 mu g g(-1); ovaries +2.2 mu g g(-1); hepatopancreas +41.9 mu g g(-1) and abodminal muscle +7.6 mu g g(-1), all effects were statistically significant. As La from Phoslock is bio-available to and taken up by the marbled crayfishes (Procambarus fallax f. virginalis), we advocate that the application of in-lake chemical water treatments to mitigate eutrophication should be accompanied by a thorough study on potential side effects.

  • 出版日期2014-7-28