Safe and Sustainable Production of Bio-based Maleic Acid
My current research focuses on the development of innovative and sustainable processes for producing bio-based maleic acid from renewable feedstocks. The project combines reaction engineering, kinetic modeling, and process scale-up to optimize operating conditions and improve process efficiency. A key objective is to identify production pathways that are environmentally sustainable, economically viable, and inherently safe for future industrial implementation.
Hydrogen Safety and Large-Scale Storage
My research also focuses on the safety of hydrogen technologies, with particular attention to large-scale liquid hydrogen storage systems. I investigate accident scenarios, hazard identification, and risk assessment methodologies to support the design of safer storage solutions. My work aims to improve the understanding of hydrogen-related risks and to contribute to the development of reliable and resilient storage technologies for the energy transition.