Ali, M.; Almuzaiqer, R.; Al-Salem, K.; Alshehri, H.; Nuhait, A.; Alabdullatif, A.; Almubayrik, A.
New Eco-Friendly Thermal Insulation and Sound Absorption Composite Materials Derived from Waste Black Tea Bags and Date Palm Tree Surface Fibers. Polymers 2024, 16, 2989.
https://doi.org/10.3390/polym16212989
AMA Style
Ali M, Almuzaiqer R, Al-Salem K, Alshehri H, Nuhait A, Alabdullatif A, Almubayrik A.
New Eco-Friendly Thermal Insulation and Sound Absorption Composite Materials Derived from Waste Black Tea Bags and Date Palm Tree Surface Fibers. Polymers. 2024; 16(21):2989.
https://doi.org/10.3390/polym16212989
Chicago/Turabian Style
Ali, Mohamed, Redhwan Almuzaiqer, Khaled Al-Salem, Hassan Alshehri, Abdullah Nuhait, Abdullah Alabdullatif, and Abdulrahman Almubayrik.
2024. "New Eco-Friendly Thermal Insulation and Sound Absorption Composite Materials Derived from Waste Black Tea Bags and Date Palm Tree Surface Fibers" Polymers 16, no. 21: 2989.
https://doi.org/10.3390/polym16212989
APA Style
Ali, M., Almuzaiqer, R., Al-Salem, K., Alshehri, H., Nuhait, A., Alabdullatif, A., & Almubayrik, A.
(2024). New Eco-Friendly Thermal Insulation and Sound Absorption Composite Materials Derived from Waste Black Tea Bags and Date Palm Tree Surface Fibers. Polymers, 16(21), 2989.
https://doi.org/10.3390/polym16212989