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The White hydrogen company
Dr. Flavio Ortigao, CTO
flavio.ortigao@recupera.si
AGENDA
Hydrogen is an energy carrier, a chemical commodity and a
intermodal platform for decarbonization
Hydrogen is the Number One.
Hydrogen (H) is the lightest and most abundant element in the universe, the
number one on the Periodic Table of the Elements. It is the fuel of the stars, like
the Sun. On the Earth hydrogen is not freely available in any significant amount,
but bond to other elements and must be extract from compounds like water,
metal hydrates, hydrocarbons or carbohydrates. Hydrogen gas (H2) is a
colorless, non toxic gas. Gravimetric it has the highest energy density of all non
radioactive materials.
Hydrogen color palette
Brown: The H2 produced by mineral coal gasification;
Grey: The H2 produced by natural gas steam reform (SMR);
Blue: The H2, produced by the above-mentioned methods with carbon capture
and storage (CCS);
Green: The H2 produced by water electrolysis, utilizing wind and solar energy;
White: the H2 produced by gasification of renewable sources, like biomass or
plastics at end-of-life, to syngas, a gas essentially composed of H2 and carbon
monoxide (CO), by simple gas separation.
2McKinsey & Company
There are seven roles for hydrogen in the energy transition
Act as a buffer to
increase system
resilience
Distribute energy
across sectors and
regions
Enable large-scale
renewables integration
and power generation
2
3
Decarbonize
transportation
Help decarbonize
building heating and
power
Decarbonize industry
energy use
Serve as feedstock, using
captured carbon
SOURCE: Hydrogen Council
4
7
5
6
1
Enable the renewable energy system Decarbonize end uses
ANALYSIS
By converting plastics, which are mostly derived from fossil oil, and composed
mainly of hydrogen and carbon, to syngas without emission, we produce H2
saving the same amount of fossil fuel and avoiding CO2 emissions. White
hydrogen is a viable way to transform the problem of non-recyclable plastics into
a green solution.
Hydrogen is the link between decarbonization
and circular economy
Core platform: Low Temperature Conversion
Gasification
1t/h
4mm shredded feedstocks
2500m3/h
Syngas
H2
+
CO
2:1
Gasification
The LTC plants utilize progressive thermo-catalytic material gasification. The material is gasified by
infra-red induction heat bellow 450°C and integrated gas purification, all within a hermetically
closed system. The result is a clean process with very high yield. The plants fluidized bed reactors
allow for continuous flow while inductive heat transfer decomposes organic structures into their
constituent elements in a multi-stage process.
Gasification Flow-Scheme
AGENDA
Dry and
pulverized
Carbon
Source
Gasification
Steam O2/Heat
Ashes
CO, H2
CO2, H2S, NH3
CO2, H2S, NH3
Medium
CV
syngas
Upgrading or
Methanation
Purific
ation
Syngas
H2
+
CO
2:1
Gas Separation
AGENDA
2500m3
/h
Syngas
H2
+
CO
2:1
Pressure Swing Adsorption
(PSA)
H2
CO
144kg/h
Gas Product flow
AGENDA
H2
CO
Hydrogenation
Desulfurization
Metal reduction
Decarbonization
Fuel
Energy storage
Methanol
Syngas
Thermal Energy
Recupera Plant in Celje, Slovenia
THANK YOU!

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White Hydrogen /Hidrogenio Branco

  • 1. The White hydrogen company Dr. Flavio Ortigao, CTO flavio.ortigao@recupera.si
  • 2. AGENDA Hydrogen is an energy carrier, a chemical commodity and a intermodal platform for decarbonization
  • 3. Hydrogen is the Number One. Hydrogen (H) is the lightest and most abundant element in the universe, the number one on the Periodic Table of the Elements. It is the fuel of the stars, like the Sun. On the Earth hydrogen is not freely available in any significant amount, but bond to other elements and must be extract from compounds like water, metal hydrates, hydrocarbons or carbohydrates. Hydrogen gas (H2) is a colorless, non toxic gas. Gravimetric it has the highest energy density of all non radioactive materials.
  • 4. Hydrogen color palette Brown: The H2 produced by mineral coal gasification; Grey: The H2 produced by natural gas steam reform (SMR); Blue: The H2, produced by the above-mentioned methods with carbon capture and storage (CCS); Green: The H2 produced by water electrolysis, utilizing wind and solar energy; White: the H2 produced by gasification of renewable sources, like biomass or plastics at end-of-life, to syngas, a gas essentially composed of H2 and carbon monoxide (CO), by simple gas separation.
  • 5. 2McKinsey & Company There are seven roles for hydrogen in the energy transition Act as a buffer to increase system resilience Distribute energy across sectors and regions Enable large-scale renewables integration and power generation 2 3 Decarbonize transportation Help decarbonize building heating and power Decarbonize industry energy use Serve as feedstock, using captured carbon SOURCE: Hydrogen Council 4 7 5 6 1 Enable the renewable energy system Decarbonize end uses
  • 6. ANALYSIS By converting plastics, which are mostly derived from fossil oil, and composed mainly of hydrogen and carbon, to syngas without emission, we produce H2 saving the same amount of fossil fuel and avoiding CO2 emissions. White hydrogen is a viable way to transform the problem of non-recyclable plastics into a green solution. Hydrogen is the link between decarbonization and circular economy
  • 7. Core platform: Low Temperature Conversion Gasification 1t/h 4mm shredded feedstocks 2500m3/h Syngas H2 + CO 2:1 Gasification The LTC plants utilize progressive thermo-catalytic material gasification. The material is gasified by infra-red induction heat bellow 450°C and integrated gas purification, all within a hermetically closed system. The result is a clean process with very high yield. The plants fluidized bed reactors allow for continuous flow while inductive heat transfer decomposes organic structures into their constituent elements in a multi-stage process.
  • 8. Gasification Flow-Scheme AGENDA Dry and pulverized Carbon Source Gasification Steam O2/Heat Ashes CO, H2 CO2, H2S, NH3 CO2, H2S, NH3 Medium CV syngas Upgrading or Methanation Purific ation Syngas H2 + CO 2:1
  • 10.
  • 11. Gas Product flow AGENDA H2 CO Hydrogenation Desulfurization Metal reduction Decarbonization Fuel Energy storage Methanol Syngas Thermal Energy
  • 12. Recupera Plant in Celje, Slovenia