A picture can be worth a thousand words. At sbh4 we also thing visually and have developed some graphics and diagrams that make complex processes vivid and more easy to understand. You can download the pdf files for private use (all graphics © sbh4 GmbH). If you would like a high resolution version for use in print media, please contact us.
Graphics ordered by name
Additive manufacturing Metal powder production
Air-fed Ammonia Production Process
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Air source heat pump operation with refrigerant gas recirculation
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Air, water and renewable electricity for e-fuels and e-fertilizers
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ATR for Ammonia Production
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ATR for Syngas production
Blue Ammonia Production Process with GHR/ATR
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Blue Hydrogen Production Process with GHR/ATR
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Business maturity and typical decarbonisation investment characteristics
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Catalysts for Reforming, Power to Liquids (PtL), Ammonia and Power to X pathways
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CCUS technologies – Absorption based
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CCUS technologies – Adsorption based & others
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CO2 liquefier with ammonia refrigeration cycle
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Compressed gas hydrogen refuelling station layouts
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Cryogenic Nitrogen Generator to Produce Gaseous and Liquid Nitrogen
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DAC technologies for direct air capture of carbon dioxide
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Difficult to decarbonise industries
E-fuels, e-fertilizers and e-chemicals production
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Electrolyser producers and emerging players
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Electrolysers: AEC, AEM, PEM and SOE for hydrogen (and syngas) production
Electronically powered production from methane
Electronically powered syngas and hydrogen production
Energy density of CNG compared to various forms of hydrogen
Energy density of LNG and alternative liquid energy vectors
Fuel gases are where the energy sector and industrial gases meet
Gasification, combustion and oxy-fuel combustion in the Allam cycle
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Gasification, Oil refining, Cement & Steelmaking can use oxygen from electrolysis to decarbonise
Green iron and steel – a diversity of routes to decarbonisation
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Haber-Bosch Ammonia Synthesis Process
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High temperature industrial heat pump operation with refrigerant gas recirculation
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Hong Kong Town Gas –Tai Po Catalytic rich gas naphta/methane reformer and CO2 capture process
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Hydrogen and hydrogen derivatives transport options when considering volume and distance
Hydrogen, hydrogen derivates and e-fuels
International shipping of hydrogen carriers derivatives and e-fuels
Methane pyrolysis, gasification and combustion
Methane pyrolysis for hydrogen production
Methane pyrolysis technologies for turquoise hydrogen production
Mineral processing using electrolysis to enable decarbonisation
Nitrogen supply modes according to purity and volume required
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Ostwald Process for Nitric Acid Production
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Oxygen-fed Ethylene Oxide Production with Integrated CO2 Capture
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Product overlaps and gas flow in the energy, chemicals & industrial gases sectors
RGH2 Chemical Looping Stage 1: Reduction and
biogenic CO2 production from landfill gas or biogas
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RGH2 Chemical Looping Stage 1:
Reduction and CO2 production from BFG BOFG
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RGH2 Chemical Looping Stage 2:
Steam oxidation and hydrogen production
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RGH2 Chemical Looping Stage 3:
Air oxidation and oxygen-depleted air generation
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Renewable hydrogen production, distribution, storage and utilisation value chains
Renewable power and energy storage technologies, their capacity and discharge time
SMR, ATR, POX and GHR processes for syngas production
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Solid Oxide Electrolysis for energy-efficient e-fertilizer production
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Solid Oxide Electrolysis process for hydrogen generation
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Solid Oxide Electrolysis process for hydrogen generation (utility gases shown)
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Solid Oxide Co-Electrolysis process for syngas generation
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Steam Methane Reforming – Decarbonisation
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The Allam cycle for natural gas – oxy-fuel thermal power generation with integrated CO2 capture
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The Allam cycle for natural gas or coal – oxy-fuel thermal power generation with integrated CO2 capture
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Ultrapure Water for Electrolysis
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Ultrapure Water for Electrolysis Unit Operations
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