Issue 12, 2024

Modelling biodegradability based on OECD 301D data for the design of mineralising ionic liquids

Abstract

Ionic liquids (ILs) are increasingly used, e.g. as solvents, electrolytes, active pharmaceutical ingredients and herbicides. If ILs enter the environment due to their use or accidental spills at industry sites, they can pollute the environment. To avoid adverse side effects of persistent ILs in the environment, they should be designed to fully mineralise in the environment after they fulfilled their function during application. (Quantitative) structure–biodegradability relationship models ((Q)SBRs) have been successfully applied in the design of benign chemicals. However, (Q)SBR models have not been widely applied to design mineralising ILs. Therefore, in this study we developed five quantitative structure–biodegradability relationship (QSBR) models based on OECD 301D data from the literature and our own in-house biodegradation experiments. These models can potentially be part of a test battery for designing fully mineralising ILs to increase the overall reliability of the biodegradability assessment and reduce uncertainties. Two datasets were formed and randomly divided into a training set with 233 and 321 compounds and a test set with 26 and 36 compounds, respectively. Both classification and regression models were built using molecular fragments with the aim to predict the classification and continuous biodegradation rate, respectively. The internal and external validations produced a R2 of 0.620–0.854 for the regression models and accuracy, true positive rate, and true negative rate were between 62 and 100% for the classification models indicating an adequate performance but also a need for improvement. For the models and the test battery presented in this study, further research is needed to demonstrate their applicability.

Graphical abstract: Modelling biodegradability based on OECD 301D data for the design of mineralising ionic liquids

Supplementary files

Article information

Article type
Paper
Submitted
21 Feb 2024
Accepted
17 May 2024
First published
22 May 2024

Green Chem., 2024,26, 7363-7376

Modelling biodegradability based on OECD 301D data for the design of mineralising ionic liquids

A. Amsel, S. Chakravarti, O. Olsson and K. Kümmerer, Green Chem., 2024, 26, 7363 DOI: 10.1039/D4GC00889H

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