Dr. Mazhar Ahmed Memon | CO2 Reduction | Best Researcher Award
Dr. Mazhar Ahmed Memon | CO2 Reduction – Tianjin University | China
Dr. Mazhar Ahmed Memon is a dynamic and driven researcher in the field of Chemical Engineering, with a focused specialization in catalysis for carbon dioxide (CO₂) conversion into sustainable fuels. Backed by over eight years of engineering and research experience, he has cultivated a profound understanding of catalyst synthesis, surface characterization, and process optimization. His ongoing Ph.D. research at Tianjin University, China, is centered on the effect of dopants on Ni/ZrO₂-based catalysts for CO₂ methanation, positioning him at the forefront of environmentally conscious energy innovation. As the founder and team leader of DCUBE Engineering Solutions, Dr. Memon blends technical prowess with entrepreneurial spirit, leading projects with a strategic vision for sustainability and innovation.
Professional Profile
SCOPUS | ORCID | GOOGLE SCHOLAR
Education
Dr. Memon holds a Ph.D. in Chemical Engineering from Tianjin University, where his research contributes to global carbon mitigation strategies through advanced catalytic processes. His doctoral work investigates the role of dopants in enhancing Ni/ZrO₂-based catalysts for CO₂ methanation. He previously earned a Master of Engineering in Petroleum Engineering (2019) and a Bachelor of Engineering in Petroleum & Natural Gas Engineering (2016), both from Mehran University of Engineering and Technology, Pakistan. His academic journey is marked by government-sponsored scholarships and a consistent focus on energy production optimization, laying a strong foundation for his research trajectory.
Experience
Dr. Memon’s career spans roles in academia, research, and industry. Since 2020, he has led DCUBE Engineering Solutions, a company dedicated to energy and infrastructure services, where he manages strategic growth, resource allocation, and project development. Prior to this, he served as Project Engineer and Assistant to the Chief Operating Officer at A.U Engineering Construction & Pvt. Limited (2016–2019), gaining critical experience in project execution, compliance audits, and pipeline construction methods. His blend of hands-on engineering, leadership, and business acumen equips him to drive impactful, multidisciplinary initiatives in research and development sectors.
Research Interests
His research interests lie at the intersection of catalysis, environmental engineering, and sustainable energy. He focuses on CO₂ methanation, catalyst development and modification, and the application of advanced materials such as perovskites for enhanced catalytic activity. Dr. Memon is skilled in material characterization techniques including HR-TEM, XPS, XRD, BET, and TGA. His broader aim is to contribute to the advancement of carbon capture, utilization, and storage (CCUS) technologies, thereby addressing critical challenges in climate change and renewable energy systems.
Awards & Recognitions
Dr. Memon’s academic and research excellence has earned him several accolades. He received a prestigious Ph.D. scholarship from the Chinese Scholarship Council (CSC) and a Federal Government Scholarship for his master’s studies, both testaments to his scholarly promise. During his undergraduate studies, he was awarded a laptop by the Prime Minister of Pakistan for his outstanding performance. He has also been acknowledged by the Society of Petroleum Engineers (SPE) International for his volunteer contributions and served as a student chapter representative at the PAPG-SPE Technical Conference. Additionally, he has presented innovative CO₂ modeling tools and gas-lift optimization systems in academic competitions.
Publications
Heterogeneous Catalysts for Carbon Dioxide Methanation: A View on Catalytic Performance
-
Authors: YL Mazhar Ahmed Memon, Yanan Jiang, Muhammad Azher Hassan, Muhammad Ajmal, …
-
Journal: Catalysts
-
Year: 2023
Ni–CaZrO₃ with perovskite phase loaded on ZrO₂ for CO₂ methanation
-
Authors: MA Memon, W Zhou, M Ajmal, Y Jiang, C Zhang, J Zhang, Y Liu
-
Journal: International Journal of Hydrogen Energy, Vol. 92, pp. 1202–1213
-
Year: 2024
Active pairs of Cu⁰/Cu⁺ for CO₂ hydrogenation
-
Authors: W Zhou, MA Memon, M Niu, X Fan, Y Jiang, X Zhang, Y Liu
-
Journal: International Journal of Hydrogen Energy, Vol. 104, pp. 49–58
-
Year: 2025
Ligand-regulated Ni-based coordination compounds to promote self-reconstruction for improved oxygen evolution reaction
-
Authors: M Ajmal, X Guo, MA Memon, M Asim, C Shi, R Gao, L Pan, X Zhang, …
-
Journal: Journal of Materials Chemistry A, Vol. 12 (29), pp. 18294–18303
-
Year: 2024
Catalyst breakthroughs in methane dry reforming: Employing machine learning for future advancements
-
Authors: S Ameen, MU Farooq, S Umer, A Abrar, S Hussnain, F Saeed, MA Memon, …
-
Journal: International Journal of Hydrogen Energy
-
Year: 2024
Understanding the Well Control Procedures for optimizing the Well Control System during Drilling
-
Authors: GZB Muhammad Arsalan Sultan, Mazhar Ahmed, Muzamil Ali
-
Journal: American Journal of Computing and Engineering, Vol. 5 (2), pp. 24–38
-
Year: 2022