The Role of Chemical Engineering in Advancing the Circular Economy: Strategies for Waste Valorization and Resource Recovery
Hycent Jacob, Enoch Nii-Okai, Alfred Yeboah, Victor Sodje, Gopal Fosu Oppong Wiafe, Nwandu Amarachukwu Immaculate, Ayodeji Olayode
Asian Journal of Physical and Chemical Sciences · pp. 128–142 · Published 3 Nov 2025
10.9734/ajopacs/2025/v13i4269Abstract
The transition toward a Circular Economy (CE) presents a transformative solution to global sustainability challenges by promoting resource efficiency, waste minimization, and material regeneration. This study explores the pivotal role of chemical engineering in advancing circular practices through innovative waste valorization and resource recovery strategies. Key technologies—including biomass conversion, plastic and electronic waste recycling, and food waste bioprocessing—are analyzed for their capacity to mitigate environmental impacts and close material loops. Chemical engineering principles such as catalysis, separation processes, and process intensification underpin these approaches, enhancing energy efficiency and resource utilization. Integration of digital tools, artificial intelligence (AI), and system optimization further enables real-time process control and sustainability assessment. However, widespread CE implementation faces barriers including technological limitations, high capital costs, and fragmented regulations. Overcoming these challenges requires interdisciplinary collaboration among industry, academia, and policymakers to develop scalable, cost-effective solutions. The study emphasizes the importance of next-generation catalysts, bio-based processing, and data-driven systems in achieving a resilient, low-waste industrial future. By bridging science, technology, and policy, chemical engineering can catalyze the global transition to a sustainable and circular economy.
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