A. Ş. Yargıç Et Al. , "Investigation of CO2 sequestration performance and statistical analysis of dye removal efficiency of liquefied hornbeam based carbon foams: Effects of biomass/solvent weight ratio, tar contribution, and chemical activation," Materials Today Sustainability , vol.24, 2023
Yargıç, A. Ş. Et Al. 2023. Investigation of CO2 sequestration performance and statistical analysis of dye removal efficiency of liquefied hornbeam based carbon foams: Effects of biomass/solvent weight ratio, tar contribution, and chemical activation. Materials Today Sustainability , vol.24 .
Yargıç, A. Ş., Gunduz Meric, G., Yarbay, R. Z., & Özbay, N., (2023). Investigation of CO2 sequestration performance and statistical analysis of dye removal efficiency of liquefied hornbeam based carbon foams: Effects of biomass/solvent weight ratio, tar contribution, and chemical activation. Materials Today Sustainability , vol.24.
Yargıç, ADİFE Et Al. "Investigation of CO2 sequestration performance and statistical analysis of dye removal efficiency of liquefied hornbeam based carbon foams: Effects of biomass/solvent weight ratio, tar contribution, and chemical activation," Materials Today Sustainability , vol.24, 2023
Yargıç, ADİFE Ş. Et Al. "Investigation of CO2 sequestration performance and statistical analysis of dye removal efficiency of liquefied hornbeam based carbon foams: Effects of biomass/solvent weight ratio, tar contribution, and chemical activation." Materials Today Sustainability , vol.24, 2023
Yargıç, A. Ş. Et Al. (2023) . "Investigation of CO2 sequestration performance and statistical analysis of dye removal efficiency of liquefied hornbeam based carbon foams: Effects of biomass/solvent weight ratio, tar contribution, and chemical activation." Materials Today Sustainability , vol.24.
@article{article, author={ADİFE ŞEYDA YARGIÇ Et Al. }, title={Investigation of CO2 sequestration performance and statistical analysis of dye removal efficiency of liquefied hornbeam based carbon foams: Effects of biomass/solvent weight ratio, tar contribution, and chemical activation}, journal={Materials Today Sustainability}, year=2023}