Development of a bioavailability-based acute effects assessment method for nickel
Charlotte Nys1, Elizabeth Middleton2, Emily Garman2
1ARCHE Consulting, Ghent, Belgium.
Environmental Toxicology and Chemistry
|January 24, 2025
Summary
This study developed a new method to assess nickel (Ni) toxicity in European freshwater, accounting for bioavailability. The approach helps set environmental thresholds for Ni, protecting aquatic life.
Area of Science:
- Environmental Toxicology
- Aquatic Ecotoxicology
- Nickel (Ni) Bioavailability
Background:
- Nickel (Ni) is a common aquatic contaminant.
- Existing environmental thresholds for Ni may not fully account for water chemistry variations.
- Bioavailability-based approaches are crucial for accurate ecotoxicity assessments.
Purpose of the Study:
- To develop a bioavailability-based effects assessment method for deriving acute freshwater environmental thresholds for nickel (Ni) in Europe.
- To revise and propose an average invertebrate bioavailability model for Ni.
- To integrate this model with fish and algae models for a comprehensive Ni normalization approach.
Main Methods:
- Compiled a comprehensive acute freshwater Ni ecotoxicity database (63 species).
- Revised Ni bioavailability models for invertebrates, integrating Ca2+, Mg2+, and pH effects.
- Validated the invertebrate model with 15 species and evaluated extrapolation to plants.
- Combined bioavailability models with toxicity data for a normalized species sensitivity distribution (SSD) approach.
Main Results:
- A novel average invertebrate bioavailability model for Ni was developed and validated.
- The model integrates Ca2+, Mg2+ competition and pH effects on Ni toxicity.
- The proposed bioavailability normalization approach for Ni is applicable to ~70% of European freshwaters.
- Site-specific acute environmental thresholds (HC5L(E)C50) for Ni can be derived.
Conclusions:
- The developed bioavailability-based method enhances the accuracy of acute environmental threshold derivation for Ni.
- This approach provides a robust framework for incorporating bioavailability into Ni risk assessment and compliance monitoring in European freshwaters.
- Further research is needed to address uncertainties in applying Ni bioavailability models to plant species.
More Related Videos
10:10Assessment of the Acute Inhalation Toxicity of Airborne Particles by Exposing Cultivated Human Lung Cells at the Air-Liquid Interface
Published on: February 23, 2020
6.9K
09:23Removal of Trace Elements by Cupric Oxide Nanoparticles from Uranium In Situ Recovery Bleed Water and Its Effect on Cell Viability
Published on: June 21, 2015
9.7K
Related Concept Videos
Precipitation Gravimetry
5.2K
Precipitation gravimetry is based on converting an analyte into a sparingly soluble precipitate, which is separated by filtration and weighed. An ideal precipitate should be pure, insoluble, of known composition, and easily filtered from the reaction mixture.
In determining nickel by gravimetric analysis, a precipitant of ethanolic dimethylglyoxime is added to a hot nickel salt solution. This is quickly followed by the dropwise addition of dilute ammonia solution until precipitation occurs. A...
In determining nickel by gravimetric analysis, a precipitant of ethanolic dimethylglyoxime is added to a hot nickel salt solution. This is quickly followed by the dropwise addition of dilute ammonia solution until precipitation occurs. A...
5.2K
Toxic Reactions: Overview
938
When toxic substances penetrate the human body, they disseminate to various tissues, undergoing metabolic changes. This process yields reactive metabolites that may covalently bind with specific target molecules, resulting in toxicity.
Toxicity falls into two primary categories: local and systemic.
Local toxicity appears at the exposure site, such as protein denaturation caused by caustic substances.
In contrast, systemic toxicity requires the toxic agent's absorption and distribution,...
Toxicity falls into two primary categories: local and systemic.
Local toxicity appears at the exposure site, such as protein denaturation caused by caustic substances.
In contrast, systemic toxicity requires the toxic agent's absorption and distribution,...
938
