For some companies renewable hydrogen is the future - for us at Lhyfe it is now. I develop plants for production of renewable hydrogen primarily for industry but also for bulk customers. We finance, build, own and operate our production plants. Together with our partners I develop complete supply chains based on renewable electricity to produce green hydrogen for the transition of industry and to decarbonize heavy duty vehicles. Renewable hydrogen can be used as feedstock, e g in combination with biogenic carbon dioxide to produce e-fuels or to be used in processes to produce, e g fossil free metals or used as a fossil-free fuel for steel mills or smelters. Project development activities for industry include finding the right partners to develop sites with the best conditions in each case. Depending on the purpose this will include identifying and securing electrical power grid connections and land agreements, sourcing biogenic carbon dioxide and electricity (with our energy experts). Development of mobility projects includes development and supply agreements and finally off-take contracts with refuelling station operators. It includes identifying and securing electrical grid connection and land agreements in strategic areas. My work includes several project development stages up until the FID when the project is handed over to project managers for EPC-activities, and finally to operation. Financial modelling is one of the key ingredients in project development and includes both Capex and Opex evaluations to obtain sufficient revenues, IRR and cost of hydrogen but also to consider and mitigate financial and project risks. Financial modelling lays the basis for both electricity sourcing and off-take contracts. Where necessary also subsidies are included and applied for at national or EU-level.Partnership setup, contractual structures and project financing is key to succeed in all industrial projects. Project development also includes cooperation with our engineering team to establish the best technical solution for each project. Feasibility studies and conceptual engineering defines configuration and performance of, e g water treatment equipment, electrolyzers, transformers, rectifiers and gas cleaning equipment to meet customer expectations. Where there is feasable off-take of by-products from electrolysis also performance of systems for supply of oxygen and residual heat is defined.Application for necessary permits together with external consultants is also included in my tasks.