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Ultrasound- and heat-assisted extraction of glycyrrhizin from licorice by two glycerol-based DESs - Modeling and optimization as per response surface methodology
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K. t. Kubra Et Al. , "Ultrasound- and heat-assisted extraction of glycyrrhizin from licorice by two glycerol-based DESs - Modeling and optimization as per response surface methodology," Sustainable Chemistry and Pharmacy , vol.31, 2023

Kubra, K. t. Et Al. 2023. Ultrasound- and heat-assisted extraction of glycyrrhizin from licorice by two glycerol-based DESs - Modeling and optimization as per response surface methodology. Sustainable Chemistry and Pharmacy , vol.31 .

Kubra, K. t., Ahmed, D., AYDAR, A. Y., & Qamar, M. T., (2023). Ultrasound- and heat-assisted extraction of glycyrrhizin from licorice by two glycerol-based DESs - Modeling and optimization as per response surface methodology. Sustainable Chemistry and Pharmacy , vol.31.

Kubra, Khadija Et Al. "Ultrasound- and heat-assisted extraction of glycyrrhizin from licorice by two glycerol-based DESs - Modeling and optimization as per response surface methodology," Sustainable Chemistry and Pharmacy , vol.31, 2023

Kubra, Khadija t. Et Al. "Ultrasound- and heat-assisted extraction of glycyrrhizin from licorice by two glycerol-based DESs - Modeling and optimization as per response surface methodology." Sustainable Chemistry and Pharmacy , vol.31, 2023

Kubra, K. t. Et Al. (2023) . "Ultrasound- and heat-assisted extraction of glycyrrhizin from licorice by two glycerol-based DESs - Modeling and optimization as per response surface methodology." Sustainable Chemistry and Pharmacy , vol.31.

@article{article, author={Khadija tul Kubra Et Al. }, title={Ultrasound- and heat-assisted extraction of glycyrrhizin from licorice by two glycerol-based DESs - Modeling and optimization as per response surface methodology}, journal={Sustainable Chemistry and Pharmacy}, year=2023}