| [1] | M. F. Ashby, Materials and sustainable development: Butterworth-Heinemann, 2022. |
| |
| [2] | H. U. Sverdrup, "The global sustainability challenges in the future: The energy use, materials supply, pollution, climate change and inequality nexus," in What Next for Sustainable Development?, ed: Edward Elgar Publishing, 2019, pp. 49-75. |
| |
| [3] | V. V. Reddy, P. Kumar, A. Rao, R. Kumar, S. Singh, V. Asha, et al., "Waste to wealth generation: Innovative methodologies in resource utilization and minimization in circular economy," in E3S web of conferences, 2023, p. 01035. |
| |
| [4] | N. Gontard, U. Sonesson, M. Birkved, M. Majone, D. Bolzonella, A. Celli, et al., "A research challenge vision regarding management of agricultural waste in a circular bio-based economy," Critical reviews in environmental science and technology, vol. 48, pp. 614-654, 2018. |
| |
| [5] | P. Paraye and R. Sarviya, "Advances in polymer composites, manufacturing, recycling, and sustainable practices," Polymer-Plastics Technology and Materials, vol. 63, pp. 1474-1497, 2024. |
| |
| [6] | R. N. Darie-Niță and S. Frąckowiak, "An Overview of Potential Applications of Environmentally Friendly Hybrid Polymeric Materials," Polymers, vol. 17, p. 252, 2025. |
| |
| [7] | M. Suriani, R. Ilyas, M. Zuhri, A. Khalina, M. Sultan, S. Sapuan, et al., "Critical review of natural fiber reinforced hybrid composites: processing, properties, applications and cost," Polymers, vol. 13, p. 3514, 2021. |
| |
| [8] | S. M. Rangappa, S. Siengchin, J. Parameswaranpillai, M. Jawaid, and T. Ozbakkaloglu, "Lignocellulosic fiber reinforced composites: Progress, performance, properties, applications, and future perspectives," Polymer Composites, vol. 43, pp. 645-691, 2022. |
| |
| [9] | T. Hassan, H. Jamshaid, R. Mishra, M. Q. Khan, M. Petru, J. Novak, et al., "Acoustic, mechanical and thermal properties of green composites reinforced with natural fibers waste," Polymers, vol. 12, p. 654, 2020. |
| |
| [10] | Y. Liu, Y. Nie, X. Lu, X. Zhang, H. He, F. Pan, et al., "Cascade utilization of lignocellulosic biomass to high-value products," Green Chemistry, vol. 21, pp. 3499-3535, 2019. |
| |
| [11] | R. Reshmy, E. Philip, A. Madhavan, R. Sirohi, A. Pugazhendhi, P. Binod, et al., "Lignocellulose in future biorefineries: Strategies for cost-effective production of biomaterials and bioenergy," Bioresource Technology, vol. 344, p. 126241, 2022. |
| |
| [12] | C. H. Lee, A. Khalina, and S. H. Lee, "Importance of interfacial adhesion condition on characterization of plant-fiber-reinforced polymer composites: a review," Polymers, vol. 13, p. 438, 2021. |
| |
| [13] | J. Müssig and N. Graupner, "Test methods for fibre/matrix adhesion in cellulose fibre‐reinforced thermoplastic composite materials: A critical review," Progress in adhesion and adhesives, vol. 6, pp. 69-130, 2021. |
| |
| [14] | E. P. Koumoulos, A.-F. Trompeta, R.-M. Santos, M. Martins, C. M. d. Santos, V. Iglesias, et al., "Research and development in carbon fibers and advanced high-performance composites supply chain in Europe: A roadmap for challenges and the industrial uptake," Journal of Composites Science, vol. 3, p. 86, 2019. |
| |
| [15] | P. K. Alagesan, "Recent advances of hybrid fiber composites for various applications," Hybrid Fiber Composites: Materials, Manufacturing, Process Engineering, pp. 381-404, 2020. |
| |
| [16] | W. Abid and E. Ammar, "Date palm (Phoenix dactylifera L.) wastes valorization: A circular economy approach," in Mediterranean fruits bio-wastes: Chemistry, functionality and technological applications, ed: Springer, 2022, pp. 403-430. |
| |
| [17] | A. Ebrahim, M. Y. Abdellah, A. M. A. Gomaa, M. Kourmpetis, H. A. Hassan Youssef, and G. T. Abdel-Jaber, "Enhancing polymer composites with date palm residues for sustainable innovation: a review," International Journal of Materials Research, vol. 116, pp. 225-239, 2025. |
| |
| [18] | H. Alkhalidy, A. A. Al-Nabulsi, M. Al-Taher, T. Osaili, A. N. Olaimat, and D. Liu, "Date (Phoenix dactylifera L.) seed oil is an agro-industrial waste with biopreservative effects and antimicrobial activity," Scientific Reports, vol. 13, p. 17142, 2023. |
| |
| [19] | A. B. Castillo, D. J. D. Cortes, C. F. Sorino, C. K. P. Soriño, M. H. El-Naas, and T. Ahmed, "Bioethanol production from waste and nonsalable date palm (Phoenix dactylifera L.) fruits: Potentials and challenges," Sustainability, vol. 15, p. 2937, 2023. |
| |
| [20] | N. K. Alqahtani, S. A. Ali, and T. M. Alnemr, "Quality preservation of date palm (Phoenix dactylifera L.) fruits at the Khalal stage: a review on current challenges, preservation methods, and future trends," Frontiers in Sustainable Food Systems, vol. 9, p. 1558985, 2025. |
| |
| [21] | A. J. Subhash, G. B. Bamigbade, and M. Ayyash, "Current insights into date by-product valorization for sustainable food industries and technology," Sustainable Food Technology, vol. 2, pp. 331-361, 2024. |
| |
| [22] | H. N. Dhakal, S. H. Khan, I. A. Alnaser, M. R. Karim, A. Saifullah, and Z. Zhang, "Potential of date palm fibers (DPFs) as a sustainable reinforcement for bio‐composites and its property enhancement for key applications: a review," Macromolecular Materials and Engineering, vol. 309, p. 2400081, 2024. |
| |
| [23] | C. Fragassa, F. Vannucchi de Camargo, and C. Santulli, "Sustainable biocomposites: Harnessing the potential of waste seed-based fillers in eco-friendly materials," Sustainability, vol. 16, p. 1526, 2024. |
| |
| [24] | A. E. Ali, M. Gronfula, and G. Abdel-Gaber, "Reinforcing Polymers with Date Palm Seeds: A Path to Greener Composites–A Review," SVU-International Journal of Engineering Sciences and Applications, vol. 6, pp. 1-16, 2025. |
| |
| [25] | W. Marzouk, F. Bettaieb, R. Khiari, and H. Majdoub, "Composite materials based on low-density polyethylene loaded with date pits: Mechanical and thermal characterizations," Journal of Thermoplastic Composite Materials, vol. 30, pp. 1200-1216, 2017. |
| |
| [26] | L. Herzallah, F. Mansour, A. Abuarra, D. Hara, R. Abdallah, and A. Juaidi, "Experimental and economic analysis to explore the potential of managing date palm waste to generate energy for heating applications," Environmental Development, vol. 54, p. 101171, 2025. |
| |
| [27] | M. Talhami, A. H. M. Kashem, K. A. Alkhamri, O. Albatarni, M. I. Thaher, P. Das, et al., "Sustainable and low-cost protic ionic liquid-based recovery of oil from agricultural wastes “date pits” for biofuel production," Resources, Conservation & Recycling Advances, vol. 25, p. 200246, 2025. |
| |