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You are here: Home1 / News2 / Analysis of the scientific basis for identifying the cosmetic industry’s c...
Analysis of the scientific basis for identifying the cosmetic industry’s contribution to the extended producer responsibility within the UWWTD publishedThomas Junker

Analysis of the scientific basis for identifying the cosmetic industry’s contribution to the extended producer responsibility within the UWWTD published

August 2026

According to the recast Urban Wastewater Treatment Directive of the European Union (UWWTD, Directive 2024/3019), quaternary treatment shall be implemented in large wastewater treatment plants (WWTPs) to remove micropollutants. An extended producer responsibility (EPR) system shall be implemented to cover the associated costs. Based on the conclusions of a feasibility report (FR) commissioned by the European Commission, which identified pharmaceuticals and cosmetics as main sources of micropollutants in wastewater, the costs shall mainly be covered by these two sectors. In this recently published work, we analyse the feasibility report regarding the used data, the applied methods, and the derived conclusions particularly concerning the cosmetic industry’s contribution to the total load of micropollutants and the total toxic load in wastewater.

Numerous and scientifically serious shortcomings of the FR were identified that invalidate its conclusions. Key shortcomings include: (1) The dataset used in the feasibility report included substances that are readily biodegradable and/or not hazardous to the environment or to human health and, thus, not within the scope of the UWWTD. (2) The process of selection of WWTP influent concentrations for many substances lacked consistency and transparency, and it remains questionable whether the used concentration data are representative for actual concentrations in untreated wastewater in Europe. (3) The total toxic load was derived using predicted no effect concentrations (PNECs), including PNECs based on ecotoxicity data estimated with quantitative structure-activity relationship models, which are associated with a high level of uncertainty. (4) The contribution of different sectors to the total toxic load was only derived for WWTP influent, although a derivation for WWTP effluents prior to quaternary treatment would have been much more appropriate. (5) In the simplistic approach used to allocate each substance to a single main usage sector, numerous substances were wrongly assigned to the cosmetics sector, although they are mainly or exclusively used in other sectors. Our re-estimation of the contribution of cosmetics to the total toxic load of wastewater correcting only the wrong allocation to sectors already resulted in a contribution of 1.4-2.7%, demonstrating that the 26% stated in the FR are a considerable overestimation of the contribution of the cosmetic sector to the total toxic load of WWTP influents.

For further information, see the early-access version of the publication:

Duis, K., Junker, T., Coors, A. (2026). The EU’s recast of the Urban Wastewater Treatment Directive: analysis of the scientific basis for identifying the cosmetic industry’s contribution to the extended producer responsibility. Environmental Sciences Europe, in press. [read more]

For additional new publications, see ECT’s publication list.

Tags: cosmetic products, cosmetics, critical analysis, EPR, extended producer responsibility, micropollutants, Urban Wastewater Treatment Directive, UWWTD, wastewater

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ECT Oekotoxikologie GmbH was founded as a privately owned, independent enterprise in 1993, and joined the SynTech Research Group in November 2021.

In compliance with Good Laboratory Practice (GLP), we perform standardised ecotoxicological tests in the laboratory as well as at semi-field and field level.

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