Projects per year
Abstract
Sorbent pads and films have been commonly used for environmental remediation purposes, but designing their internal structure to optimize access to the entire volume while ensuring cost-effectiveness, ease of fabrication, sufficient strength, and reusability remains challenging. Herein, we report a trimodal sorbent film from recycled polypropylene (PP) with micropores, macro-voids, and sponge-like 3D cavities, developed through selective dissolution, thermally induced phase separation, and annealing. The sorbent has hundreds of cavities per cm2 that are capable of swelling up to twenty-five times its thickness, allowing for super-fast saturation kinetics (within 30 s) and maximum oil sorption (97 g/g). The sorption mechanism follows a pseudo-second-order kinetic model. Moreover, the sorbent is easily compressible, and its structure is retained during oil sorption, desorption, and resorption, resulting in 96.5% reuse efficiency. The oil recovery process involves manually squeezing the film, making the cleanup process efficient with no chemical treatment required. The sorbent film possesses high porosity for effective sorption with sufficient tensile strength for practical applications. Our integrated technique results in a strengthened porous polymeric structure that can be tailored according to end-use applications. This study provides a sustainable solution for waste management that offers versatility in its functionality.
Original language | English |
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Article number | 14163 |
Journal | Scientific Reports |
Volume | 13 |
Issue number | 1 |
DOIs | |
Publication status | Published - Dec 2023 |
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Dive into the research topics of 'Designing super-fast trimodal sponges using recycled polypropylene for organics cleanup'. Together they form a unique fingerprint.Projects
- 1 Finished
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EX-QNRF-NPRPS-34: From Waste to Wealth: Eco-Friendly production of super-sorbents from plastic waste.
Mckay, G. (Lead Principal Investigator), Zuhara, S. (Graduate Student), Fellow-4, P. D. (Post Doctoral Fellow), Assistant-3, R. (Research Assistant), Student-1, U. (Undergraduate Student), Shakoor, D. A. (Principal Investigator) & Luyt, P. A. (Principal Investigator)
5/01/20 → 18/11/23
Project: Applied Research