Search, discover, and connect with over 1,800 researchers, faculty members, and scholars across all departments of KNUST.
Department of Chemical Engineering
The researcher's work spans multiple disciplines within the physical and health sciences, reflecting a comprehensive approach to exploring diverse topics such as cellulose research, municipal solid waste management, food composition, well engineering, recycling techniques, environmental processes, and healthcare waste management. Their publications cover themes like advanced cellulose studies, Municipal Solid Waste Management with a focus on recovery mechanisms and decision support systems, food properties and plant cell walls, and environmental waste management strategies.
Department of Chemical Engineering
This researcher's work is centered on advancing research through a holistic approach that integrates diverse global methodologies across various scientific domains. The focus spans themes such as biofuels, microbial fuel cells, biological control of invasive species, and advancements in energy production and waste management technologies. Each area contributes to broader efforts in sustainability and innovation, employing eco-friendly technologies and sustainable practices across different disciplines. The integration of these studies highlights a unified strategy that bridges environmental challenges with technological innovations, offering innovative solutions for global issues like waste management, energy yield, and bioethanol production while emphasizing the role of natural fiber reinforced composites and other eco-friendly materials in achieving cleaner and more sustainable outcomes.
Department of Chemical Engineering
Anaerobic digestion is pivotal in anaerobic processes, driving biogas production and fuel sources. It employs water treatment techniques such as activated carbon filters to remove toxic elements from wastewater. Ethnobotanical extracts are utilized in both food production and chemical synthesis. HIV research underscores the necessity of timely antiviral treatments. Climate change studies highlight solar energy's role in reducing GHAs. Renewable energy integration aims to enhance global efficiency, while examples of solar power demonstrate practical applications in addressing climate challenges.
Department of Chemical Engineering
The researcher's work focuses on advancing environmental sustainability through innovative technological applications across diverse fields. Key areas include the development of biochar-based adsorption for gas removal, the use of cellulosics for soil improvement and water treatment, and solar radiation-driven solutions for renewable energy. Additionally, research into plant growth enhancement techniques, waste management strategies in Ghana, and innovative biotechnology methods contribute to sustainable practices in agricultural and industrial settings.
Department of Chemical Engineering
This researcher examines human behavior and mental health through the lens of social networks, collaborating with multiple researchers to explore diverse topics such as social relationships and outcomes across various disciplines.
Department of Chemical Engineering
The researcher has focused on advancing computational modeling techniques to address complex systems across diverse domains such as social networks, biological systems, and quantum mechanics. Their work integrates mathematical models and network science to understand intricate interactions in these systems, bridging theory with practical applications that address real-world challenges from disease spread to infrastructure optimization.

Department of Chemical Engineering
This researcher integrates interdisciplinary approaches across high-dimensional statistics, machine learning, optimization, and bioinformatics, with a particular emphasis on computational methods for genomics and personalized medicine.
Department of Chemical Engineering
This researcher's work integrates deep learning techniques across multiple domains, focusing on applications in image restoration, fluid dynamics simulations, and inverse problem-solving in various scientific fields. Their approach leverages advanced machine learning methods to address challenges in computational mechanics and theoretical physics, showcasing a multidisciplinary and transformative research strategy.
Department of Chemical Engineering
The researcher's work focuses on developing computational models to study complex biological systems, including gene regulation, cellular network dynamics, and processes across diverse organisms such as bacteria and humans. Their research integrates mathematical modeling with experimental data to address fundamental questions in biology.