Master Offshore Hydrogen: From Seawater Electrolysis to Digital Twin‑Driven System Design in 4 weeks through hands-on, project-based online training with DSTC.
Nanotechnology & Materials Science
Module-by-module breakdown of Offshore Hydrogen: From Seawater Electrolysis to Digital Twin‑Driven System Design, from foundations to a certified capstone project.
Outline
Understand fundamentals of seawater electrolysis and hydrogen kinetics • Analyze salinity, chloride chemistry, and corrosion mechanisms • Model pressure‑temperature effects in marine environments • Evaluate HER/OER catalysts and membranes for saline stability
Outline
Compare deep‑sea vs surface electrolysis architectures • Design pressurized subsea electrolyzer systems • Integrate offshore wind, tidal and wave energy • Implement safety monitoring and failure‑mode analysis
Outline
Examine marine environmental impact and regulatory frameworks • Conduct Life‑Cycle Assessment of saline electrolysis systems • Perform carbon‑footprint and techno‑economic evaluation • Identify research gaps and frame innovation opportunities
e-Certificate and e-Marksheet issued on successful completion.