
Hydrogen
Overview
Hydrogen
To meet the climate targets set out by the Paris 2015 Agreement, namely further decreasing CO2 emissions, it is necessary to increase the share of renewable energy in the energy mix and to replace fossil fuels at a progressive rate. Hydrogen has the great advantage that it cannot only be used as a long-term storage solution for electric power but also as a feedstock for industry, or as fuel for mobility.
With the worldwide enthusiasm for hydrogen rising, and the number of hydrogen-related undertakings increasing, it is foreseeable that the role of hydrogen, and in particular green hydrogen, will continue to grow in the future. ILF endeavors to contribute to the shaping of a sustainable future by applying its knowledge and experience in the pipeline, refinery and petrochemical plant business – gained over the past 20 years – to the design of hydrogen production, storage and transport facilities.
ILF’s engineering expertise covers the entire hydrogen value chain and offers solutions for a large spectrum of hydrogen-related projects. This includes the design of facilities for renewable electricity generation, water treatment and desalination, as well as hydrogen production, storage, and transport.
ILF renders all the services required for the successful implementation of hydrogen projects.
Specialized Services for Hydrogen Projects:
- Technical safety studies
- Venting/blowdown studies
- Heat radiation and gas dispersion calculations
- Hazardous area calculations
- Overall energy integration studies
- Upgrade and modification studies
- Pipeline system optimization
- Site selection studies and pipeline routing
Fields of Expertise
- Ammonia production
- Conversion of hydrogen to power
- Electrolysis
- Gas treatment
- Heat integration
- Hydrogen refueling stations
- Nitrogen generation
- Production of green chemicals
- Renewable power generation
- Transport of hydrogen via pipeline systems
- Underground storage
- Water transmission
- Water treatment
Key Highlights
- DEMO4GRID – Owner’s Engineer performing the conceptual design, preparation of documents for the permit application procedure, as well as detailed design for a 4 MW electrolyzer facility, H2 storage facilities, as well as a H2 refueling station for MPREIS Austria
- ELEMENT EINS – Feasibility study for Gasunie/TenneT/Thyssengas, Germany, for a 40–100 MW power-to-gas facility including an electrolyser plant, a H2 pipeline, and investigation of methanation as well as H2 injection into the existing gas network
- RED SEA DEVELOPMENT PROJECT – Feasibility study for the Red Sea Development Company, investigating hydrogen as a potential energy storage solution for up to 50 MW of excess power from renewable generation sources
- ELTEN COMPRESSOR STATION – Feasibility study investigating the implications on machinery, balance of plant and pipeline when mixing hydrogen into the existing natural gas system

References
Proven Impact Through Real-World Projects
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