HEIndividual fellowship2023–2025

CoLiBRI · Cobalt and Lithium speciation, toxicity, and Bacterial community Regulations at the sediment-water-Interface

Horizon Europe — Marie Skłodowska-Curie Actions

Duration
2023-09-01 → 2025-08-31
EU contribution
€206,888
Participants
2
Scheme
HORIZON-TMA-MSCA-PF-EF

Lines connect the coordinator with its partners.

Results in brief

Cobalt and Lithium speciation, toxicity, and Bacterial community Regulations at the sediment-water-Interface

Lithium and cobalt are still essential elements for battery technologies and thus important for renewable energy systems. In the EU's transition toward a climate-neutral economy these elements continue to be relevant. Due to mining activities, incomplete recycling and inappropriate waste disposal, these elements can be released into the environment, including aquatic systems. Aquatic sediments can act as sinks and sources for metal contaminants. Biogeochemical parameters can impact their speciation and thus the bioavailability and toxicity. Climate related ecological changes can alter their chemical behaviour and lead to their remobilisation. The goal of the project was to integrate biogeochemistry, toxicology and microbiology to assess the environmental risk of lithium and cobalt in aquatic systems holistically in three research objectives: 1. Investigating the impact of pH on the distribution of lithium and cobalt at the sediment-water interface 2. Determining the toxicity of lithium and cobalt to zebrafish at different stages 3. Determining microbial community changes in the sediment as reaction to lithium and cobalt contamination

Data: CORDIS, © European Union

Project objective

In the EU, transport is responsible for a quarter of greenhouse gas emissions. For the transition to a climate neutral economy, battery development and production strategies are thus important. By 2030, the EU expects an increased requirement of 18 times more lithium and 5 times more cobalt. These elements are released into the aquatic environment by mining processes and wastewater discharge. In aquatic systems, sediments are important and dynamic sinks or sources for such elements, depending on varying environmental conditions. The chemical state, bioavailability, and toxicity of these elements in aquatic systems is highly influenced by environmental parameters such as pH and temperature, which in turn are influenced by climate change. The goal is to investigate the toxicity of lithium and cobalt in aquatic systems under different environmental conditions. This will be addressed in 3 research objectives: 1) Investigation of the impact of temperature and pH on the distribution and chemical characteristics of lithium and cobalt within aquatic systems 2) Analysis of toxic effects of lithium and cobalt to zebrafish 3) Evaluation of lithium and cobalt related microbial community changes within the sediment. To address these objectives, we will perform a long-term exposure with zebrafish to selected sediments spiked with lithium and cobalt in an aquarium system capable of monitoring and regulating different water parameters. The toxicity will be determined with the zebrafish embryo toxicity test. Gene-expression analysis will reveal sub-lethal toxic effects of the selected elements. Bioaccumulation and content of lithium and cobalt in water and sediment will be quantified by ICP-MS. Changes in the sediment microbial community will be investigated by metagenome fingerprinting. With this interdisciplinary holistic approach we aim to improve environmental risk assessment of sediments contaminated with lithium and cobalt, particularly in regard to climate change.

Original text from CORDIS.

Participants

  • OREBRO UNIVERSITY · OrebroCoordinatorSweden
  • Bundesanstalt fuer Gewaesserkunde · KoblenzGermany

Links

Data: CORDIS, © European Union