This paper deals with species sensitivity distributions (SSDs) for the lipophilic insecticide lufenuron and benthic arthropods based on sediment-spiked laboratory toxicity tests. This compound that inhibits chitin synthesis and moulting of arthropods persists in sediment. Using field-collected sediment, toxicity tests were conducted with three macro-crustaceans and six insects. The Hazardous Concentration to 5% of the tested species, the HC5 (and 95% confidence limit), derived from an SSD constructed with 10d-LC50′s was 2.2 (1.2–5.7) μg/g organic carbon (OC) in dry sediment. In addition, HC5 values derived from SSDs constructed with 28d-LC10 and 28-d LC50 values were 0.13 (0.02–1.50) μg/g OC and 2.0 (1.3–5.5) μg/g OC, respectively. In 28d t...
Contaminants, such as pesticides, can cause direct toxic effects when released into aquatic environm...
<p>The aims of the present study were to present a methodology for toxicity tests that can be used w...
Höss S, Roessink I, Brock TCM, Traunspurger W. Response of a nematode community to the fungicide flu...
This paper deals with species sensitivity distributions (SSDs) for the lipophilic insecticide lufenu...
Sediment ecotoxicity studies were conducted with lufenuron to (i) complement the results of a water-...
Pesticides such as lufenuron are widely used in agriculture to preserve crops and maximize harvests....
28-Day sediment-spiked laboratory toxicity tests with eight benthic macroinvertebrates and the lipop...
The fungicide fludioxonil, given its physicochemical properties, potentially accumulates and persist...
Species sensitivity distributions (SSD) and 5% hazardous concentrations (HC5) are distribution-based...
The long-term response, including recovery, of aquatic macroinvertebrates to short-term insecticide ...
When entering aquatic ecosystems, hydrophobic organic chemicals like the fungicide fludioxonil parti...
Information from effects of pesticides in sediments at an ecosystem level, to validate current and p...
Sediment toxicity tests play an important role in prospective risk assessment for organic chemicals....
After decades of pollution, benthic communities in floodplain lake ecosystems are likely to be expos...
It is often assumed that bioassays are better descriptors of sediment toxicity than toxicant concent...
Contaminants, such as pesticides, can cause direct toxic effects when released into aquatic environm...
<p>The aims of the present study were to present a methodology for toxicity tests that can be used w...
Höss S, Roessink I, Brock TCM, Traunspurger W. Response of a nematode community to the fungicide flu...
This paper deals with species sensitivity distributions (SSDs) for the lipophilic insecticide lufenu...
Sediment ecotoxicity studies were conducted with lufenuron to (i) complement the results of a water-...
Pesticides such as lufenuron are widely used in agriculture to preserve crops and maximize harvests....
28-Day sediment-spiked laboratory toxicity tests with eight benthic macroinvertebrates and the lipop...
The fungicide fludioxonil, given its physicochemical properties, potentially accumulates and persist...
Species sensitivity distributions (SSD) and 5% hazardous concentrations (HC5) are distribution-based...
The long-term response, including recovery, of aquatic macroinvertebrates to short-term insecticide ...
When entering aquatic ecosystems, hydrophobic organic chemicals like the fungicide fludioxonil parti...
Information from effects of pesticides in sediments at an ecosystem level, to validate current and p...
Sediment toxicity tests play an important role in prospective risk assessment for organic chemicals....
After decades of pollution, benthic communities in floodplain lake ecosystems are likely to be expos...
It is often assumed that bioassays are better descriptors of sediment toxicity than toxicant concent...
Contaminants, such as pesticides, can cause direct toxic effects when released into aquatic environm...
<p>The aims of the present study were to present a methodology for toxicity tests that can be used w...
Höss S, Roessink I, Brock TCM, Traunspurger W. Response of a nematode community to the fungicide flu...