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Sulfur dioxide capture by deep eutectic solvents: Proposing purely predictive absorption models
Amir Hosein Naderi Beni1, Reza Haghbakhsh1
1Department of Chemical Engineering, Faculty of Engineering, University of Isfahan, Isfahan 81746-73441, Iran.
This study introduces two new predictive models to estimate sulfur dioxide (SO2) absorption in Deep Eutectic Solvents (DESs). These models offer accurate and efficient alternatives to experimental measurements for environmental applications.
Area of Science:
- Environmental Chemistry
- Green Chemistry
- Chemical Engineering
Background:
- Sulfur dioxide (SO2) emissions from industrial combustion contribute to acid rain and environmental damage.
- Deep Eutectic Solvents (DESs) are emerging green solvents with potential for SO2 capture.
- Experimental measurement of SO2 solubility in DESs is costly and time-consuming.
Purpose of the Study:
- To develop accurate and predictive thermodynamic models for SO2 absorption in DESs.
- To provide efficient tools for assessing DESs as SO2 absorbents.
- To support environmental regulations by facilitating SO2 emission control strategies.
Main Methods:
- Development of two group contribution (GC) and atomic contribution (AC) models.
- Utilized a comprehensive dataset of 997 SO2 absorption data points for 65 different DESs.
- Validated model performance across wide ranges of temperatures and pressures.
Main Results:
- Both developed GC and AC models demonstrated reliable and predictive performance.
- Achieved average absolute relative deviations (AARD%) of 10.3% for the GC model and 11.7% for the AC model.
- Established the first general predictive models for SO2 absorption in various DESs in the open literature.
Conclusions:
- The developed models provide accurate predictions of SO2 solubility in DESs.
- These models can significantly reduce the need for extensive experimental testing.
- The findings support the use of DESs for effective SO2 emission control in industrial processes.
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