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When Heat Meets Pollutants: Integrating Degree-Days and Chemical Activity Concepts for the Assessment of Temperature-Driven Toxicity
Stockholm University, Faculty of Science, Department of Environmental Science.ORCID iD: 0000-0002-4192-6956
Stockholm University, Faculty of Science, Department of Environmental Science. HELCOM, Finland.ORCID iD: 0000-0002-0332-3978
Stockholm University, Faculty of Science, Department of Environmental Science.ORCID iD: 0000-0003-1550-8694
Stockholm University, Faculty of Science, Department of Environmental Science.ORCID iD: 0000-0001-7140-2654
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2026 (English)In: Environmental Science and Technology, ISSN 0013-936X, E-ISSN 1520-5851, Vol. 60, no 9, p. 6916-6926Article in journal (Refereed) Published
Abstract [en]

Aquatic organisms face simultaneous stress from rising temperatures and chemical contaminants, yet ecotoxicological assays rarely account for temperature-driven physiological aging. We introduce a framework combining degree-days (D°) and chemical activity to disentangle physiological and chemical drivers of toxicity. This approach was tested using Daphnia magna exposed to polycyclic aromatic hydrocarbons (PAHs). Two exposure designs were compared: (1) fixed duration (72 h) at 20 and 25 °C, and (2) D°-standardized exposure corresponding to 60 D° (72 h at 20 °C; 58 h at 25 °C). Chemical activity, a thermodynamic measure of bioavailable dose, was used as the exposure metric, with the median lethal activity (La50) as the primary endpoint. To provide a more nuanced view of the metabolism, sublethal responses (δ13C, C/N ratio, protein content) were also evaluated. In fixed-time exposures, La50 values were lower at 25 °C, indicating greater apparent toxicity at elevated temperature. This difference disappeared under D° normalization, showing that increased mortality reflected faster physiological aging rather than altered PAH behavior. Metabolic indicators supported this interpretation, revealing PAH-driven, temperature-independent energy depletion. By aligning exposure with cumulative thermal experience and quantifying dose as chemical activity, this framework enables temperature-normalized toxicity assessment and supports climate-aware ecological risk evaluation for HOCs.

Place, publisher, year, edition, pages
2026. Vol. 60, no 9, p. 6916-6926
Keywords [en]
chemical activity, Daphnia magna, degree-days, hydrophobic organic contaminants (HOCs), stable isotope analysis (SIA), temperature-dependent toxicity
National Category
Environmental Sciences
Identifiers
URN: urn:nbn:se:su:diva-245920DOI: 10.1021/acs.est.5c10332ISI: 001696655400001PubMedID: 41721460Scopus ID: 2-s2.0-105032174845OAI: oai:DiVA.org:su-245920DiVA, id: diva2:1991608
Available from: 2025-08-25 Created: 2025-08-25 Last updated: 2026-03-31Bibliographically approved
In thesis
1. Combined Effects of Chemical Mixtures and Environmental Stressors on Aquatic Invertebrates
Open this publication in new window or tab >>Combined Effects of Chemical Mixtures and Environmental Stressors on Aquatic Invertebrates
2025 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

Global aquatic environments are under increasing pressure from chemicals and other anthropogenic stressors. In an effort to protect the environment, chemicals must be tested for any potential adverse effects. However, the test methods used to date are highly standardised single-substance protocols and cannot adequately represent natural situations. This thesis therefore explores ways to improve existing ecotoxicity guidelines by including mixtures of contaminants in combination with other prevalent stressors.

A major objective of the thesis is to apply the chemical activity concept when investigating the potential toxicity of non-polar hydrophobic organic contaminants (HOCs). This approach provides a measure that is comparable over different matrices, like water (Paper I, II, IV) and sediment (Paper III). It is further useful, as it allows mixtures of contaminants to be expressed as a single dose metric. Paper I explored the need for more concise neonatal handling before the start of the exposure in the existing guideline for the Daphnia magna acute immobilisation test. The feeding status within the first 24 h of neonatal life affected the ecotoxicity outcome significantly. Thus, it would be beneficial if the guidelines included a suggested feeding regime prior to the start of exposure. The comparability of chemical activity in a mixture toxicity study combining HOCs and metals is tested in Paper II. The addition of zinc, as a model metal, in a Daphnia acute test showed an additive effect of zinc and HOCs on protein content. The feasibility of chemical activity in combination with passive samplers was shown in Paper III, where it was applied in sediment-water toxicity test systems with Lumbriculus variegatus and Chironomus riparius and compared with traditional total concentration approaches. The study illustrated differences between the two approaches and how traditional measurements can lead to uncertainty in tolerance of L. variegatus to HOCs. The increasing thermal pressure aquatic organisms face under global warming was incorporated in ecotoxicity testing with D. magna by using the degree-day approach (Paper IV). Through the use of cumulative thermal experiences, the effects of temperature on physiology could be disentangled from toxic effects, showing that D. magna sensitivity was temperature-independent.

Overall, this thesis provides important insights into feasible improvements of existing standardised ecotoxicity guidelines as well as exploring the usefulness of sublethal endpoints for a better understanding of potential risks in the environment.

Place, publisher, year, edition, pages
Stockholm: Department of Environmental Science, Stockholm University, 2025. p. 31
Keywords
Chemical activity, degree-days, multi-stressor, ecotoxicity guidelines, bioassay, sublethal endpoints
National Category
Environmental Sciences
Research subject
Environmental Sciences
Identifiers
urn:nbn:se:su:diva-245921 (URN)978-91-8107-366-9 (ISBN)978-91-8107-367-6 (ISBN)
Public defence
2025-10-14, Ahlmannsalen, Geovetenskapens hus, Svante Arrhenius väg 12, Stockholm, 10:00 (English)
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Supervisors
Available from: 2025-09-22 Created: 2025-08-25 Last updated: 2026-03-17Bibliographically approved

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Gorokhova, ElenaAlurralde, GastónSteigerwald, SophieAbel, SebastianSaladin, YvesSobek, AnnaEriksson-Wiklund, Ann-Kristin

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