2025 Annual Report
Annual Report
January 2026 news from the Sec Gen
News

January 2026 news from the Sec Gen

Dear colleagues and friends,As we begin a new year, I would like to thank you for your continued engagement and trust in ECETOC. 2026 promises to be an exciting and dynamic year, and I am pleased...
ECETOC launches Secondee Programme
News

ECETOC launches Secondee Programme

Looking for an extra challenge? A next step to help develop your career? Consider applying for our Secondee Programme!ECETOC is looking for early-career scientists currently working at a member co...
HSSD Tool

HSSD Tool

This software was developed by a consortium of partners to facilitate the uptake of novel approaches to estimate aquatic threshold concentrations (e.g. the concentration at which 5% of the species are exposed above their EC50, HC5).
The Human Exposure Assessment Tools Database (heatDB)

The Human Exposure Assessment Tools Database (heatDB)

heatdb is a public directory of exposure data sources as well as available tools for exposure
NanoApp

NanoApp

ECETOC’s NanoApp is a tool designed to define the boundaries of sets of similar nanoforms and to generate a justification for the REACH registration.
Targeted Risk Assessment (TRA)

Targeted Risk Assessment (TRA)

The Targeted Risk Assessment (TRA) estimates exposures to workers, consumers and the environment that arise during a series of events.
Chronic fish case studies towards an IATA

Chronic fish case studies towards an IATA

Why?Hazard and safety assessments for the pelagic compartment often rely on in vivo studies using a single fish species, raising ethical concerns and uncertainty in terms of extrapolation....
Estimating the environmental release of Synthetic Polymeric Microparticles from Products

Estimating the environmental release of Synthetic Polymeric Microparticles from Products

Why?REACH restriction: SPM use restricted; emissions reporting required by May 2027. Gap: No analytical methods available to measure SPM emissions. Solution: Draft SPERC-based approac...
Case Studies on Reliability and Relevance Considerations during Validation of NAMs

Case Studies on Reliability and Relevance Considerations during Validation of NAMs

Why?Validation of NAMs is often overlooked despite its importance for regulatory use. Traditional validation methods are less suitable for NAMs, which focus on key events rather than apical...
Technical Report
07.04.2017

TR 129: Biodegradation Default Half-Life Values in the Light of Environmentally Relevant Biodegradation Studies – Analysis of the ECETOC Biodegradation Data Base

In a nutshell

Biodegradation is a key process for breaking down and finally removing chemicals from the environment. The biodegradation half-life time is a key input parameter for environmental risk assessment because it helps to predict the effectiveness of biodegradation. It is widely accepted that a chemical which passes the stringent conditions of an OECD Ready biodegradability test system is assumed to be non-persistent in the environment, as it will biodegrade under a broad variety of different environmental conditions. For modelling purposes, a default half-life of 15 days in fresh water has been set for chemicals categorised as ‘readily biodegradable’.

ECETOC investigated the appropriateness of the current approach of approximating half-lives on the basis of tests of ready biodegradability. To that end, a biodegradation database generated by ECETOC from published literature was analysed1. The ECETOC database comprises biodegradation studies (and derived half-lives) for the aquatic environment, from freshwater to marine conditions. This analysis critically compares biodegradation half-lives generated under a variety of environmentally more realistic conditions, e.g. in situ testing and laboratory tests with inocula taken from characterised locations and tested under non-standard ready-test conditions, with the recent default settings. The focus is on chemicals, which are categorised as ‘readily biodegradable’ in fresh water.

For the 12 substances categorised as ‘readily biodegradable’, an overall median half-life of 1.95 days can be calculated. Substance specific half-life median values span from 0.9 to 11.4 days, whereas individual chemical half-lives range from 0.3 days up to 150 days for these readily biodegradable substances, reflecting the variability in test designs, inoculum characterisation and temperature regimes.

The main implications of the study are twofold. It provides assurance to environmental risk assessors of the conservative nature of the default value of the biodegradation half-life. Hence, applying those default values in screening level assessment contribute to over-predicting exposure leading to conservative risk estimates. At the same time, the large variability of biodegradation half-lives in relation to in test designs, inoculum characterisation and temperature indicates the need for a discussion of the use of one single default half-life for all substances and all freshwater environments. This is of particular relevance for refining risk assessments.

[1] ECETOC Biodegradation Data Base, Excel file (ECETOC, 2009).

Reference

TR129: Biodegradation Default Half-Life Values in the Light of Environmentally Relevant Biodegradation Studies. Analysis of the ECETOC Biodegradation Data Base

ISSN-2079-1526-129 (online)
D-2017-3001-250