Energy Systems Design, Hydrogen & Decarbonization
The transition to a low-carbon future is not only an engineering challenge, but also a people challenge. Women in Green Hydrogen brings together talented professionals who are helping shape the future of energy while creating a community where expertise, ideas, and opportunities can be shared and amplified.
Clean Energy Professional and Mechanical Engineer with a PhD specializing in clean energy systems and sustainable energy technologies. Experienced in energy systems design, performance and efficiency analysis, techno-economic and environmental assessment, and the development of integrated renewable and nuclear energy solutions. Committed to advancing decarbonization through innovative, practical, and data-driven approaches to energy system development.
-Assessment of a Nuclear Based Integrated System to Produce Useful Outputs, 15th International Exergy, Energy, and EnvironmentalSymposium (IEEES-15), Istanbul Atlas University, Istanbul, Turkey, December 19-21, 2024.
-An Investigation of Newly Developed Thermochemical Copper-Chlorine Cycle for Hydrogen Production, 15th International Conferenceon Hydrogen Production (ICHP-2024), University of Sharjah, United Arab Emirates, December 09-12, 2024.
-A Solar-Driven Trigeneration System with Thermal Energy Storage Option, World Energy Storage Conference, Qatar University, Doha,Qatar, December 03-05, 2024.
-A Heat Recovery Study on a Thermochemical Cycle for Hydrogen Production, 12th Global Conference on Global Warming, HarranUniversity, Sanliurfa, Turkey, May 16-19, 2024.
-A Renewable Energy-Based Multigeneration System with Thermal Energy Storage and Hydrogen Storage, World Energy StorageConference, University of Pittsburgh, Bradford, USA, November 05-08, 2023.
-An Environmental Impact Comparison of Thermochemical Cycles and Steam Methane Reforming for Hydrogen Production Processes,11th Global Conference on Global Warming, Halic University, Istanbul, Turkey, June 14-16, 2023.
-Few-Layer Graphene Coated on Indium Tin Oxide Electrode Prepared By Chemical Vapor Deposition And Their Enhanced GlucoseElectrooxidation Activity, International Symposium For Environmental Science And Engineering Research (Iseser2019), SelcukUniversity, Konya, Turkey, May 25-28 2019.
-Development of the Direct Borohydride Fuel Cell Catalyst, 27 May 2019, International Symposium for Environmental Science andEngineering Research (Iseser2019), Selcuk University, Konya, Turkey, May 25-28 2019.
-Mechanical and Tribological Properties of Phenol Epoxy Composites Reinforced with Boron Nitride, International Conference on Material Science and Technology, Ankara University, Ankara, Turkey, October 17-20, 2019.
-Batgi, S. U., & Dincer, I. (2026). A solar-driven trigenerational system with thermochemical cycle and thermal energy storage: Case study. Journal of Energy Storage, 152, 120519.
-Batgi, S. U., & Dincer, I. (2025). Experimental investigation of a newly developed hydrogen production cycle for green energy applications. Energy Conversion and Management, 341, 120005.
-Batgi, S. U., & Dincer, I. (2025). Development of a novel thermochemical cycle without electrolysis step to produce hydrogen. Chemical Engineering Science, 121292.
-Batgi, S. U., Yapici, B., & Sahin, O. G. (2024). Electrocatalytic Activity of Carbon Nanotube-Supported Pt-Based Bimetallic Catalysts for Borohydride Electro-Oxidation. Journal of Electronic Materials, 53(12), 7846-7857.
-Batgi, S. U., & Dincer, I. (2024). Design and analysis of a floating photovoltaic based integrated energy system with ammonia production. Applied Thermal Engineering, 252, 123676.
-Batgi, S. U., & Dincer, I. (2024). Design of a two-renewable energy source-based system with thermal energy storage and hydrogen storage for sustainable development. Journal of Energy Storage, 89, 111742.
-Batgi, S. U., & Dincer, I. (2024). A study on comparative environmental impact assessment of thermochemical cycles and steam methane reforming processes for hydrogen production processes. Computers & Chemical Engineering, 180, 108514.
-Batgi, S. U., & Dincer, I. (2023). A solar driven hybrid sulfur cycle based integrated hydrogen production system for useful outputs. International Journal of Hydrogen Energy, 48(88), 34316-34329.