PRODUKTE
“IF YOU SAY THE SKY IS BLUE AND THE FUTURE IS BRIGHT, THEN HYDROGEN HAS TO BE GREEN.”
“GREEN” nowadays stands for a lot of good things, and is to invoke that products or services are sustainable and will have a positive impact on how these goods and services are provided, produced and then utilized. At the end of the day however, to truly create an impact in the fight against climate change, it has to be about how CO2 is effectively eliminated in today’s consumption of energy – both directly and indirectly.
Based on the needs of our clients we produce renewable fuels of non-biological origin (RFNBO) or low carbon fuels that count towards regulatory targets or our clients’ ambitions to decarbonize. All are also commonly known as PtX -fuels (Power to X).
PtX fuels are more than just a viable alternative to traditional fossil fuels — they’re the key to creating a truly sustainable energy future. Our current energy system, largely based on fossil fuels, contributes significantly to global greenhouse gas emissions. PtX fuels, in contrast, offer a path to sustainable and zero-emission energy systems.
PtX fuels are based on splitting water into hydrogen and oxygen releasing heat for industrial use or heat grids. The hydrogen can the be combined with nitrogen to produce renewable ammonia or renewable CO2 to produce hydrocarbons such as renewable methanol or sustainable aviation fuel (SAF).
Based on the needs of our clients we produce renewable fuels of non-biological origin (RFNBO) or low carbon fuels that count towards regulatory targets or our clients’ ambitions to decarbonize.
Green is the colour between cyan and yellow on the visible spectrum.
It is evoked by light which has a dominant wavelength of roughly 495–570 nm.
RFNBO
RFNBOs (renewable fuels of non-biological origin) are defined in a delegated act to Renewable Energy Directive (RED II) of the EU and have a greenhouse gas saving compared to fossil alternatives of more than 70%. The production of RFNBOs follows strict standards such as temporal and geographical correlation of electricity production and consumption as well as additionality of the power generation.
The methodology for calculating such savings takes into account greenhouse gas emissions across the full lifecycle of the fuels, including upstream emissions, emissions associated with taking electricity from the grid, from processing, and those associated with transporting these fuels to the end-consumer. The methodology also clarifies how to calculate the greenhouse gas emissions of renewable hydrogen or its derivatives in case it is co-produced in a facility that produces fossil-based fuels.
The terms “renewable ammonia” or “renewable methanol” therefore now carry a specific definition of CO2-content in the final products that are provided and then consumed in and towards the EU.
LOW CARBON
Low Carbon Fuels are synthetic fuels that do not meet all criteria for RFNBO, but that still provide a significantly lower carbon intensity than their fossil alternatives and can provide a cost competitive alternative to RFNBO.
BIOFUELS
Biofuels are a renewable energy source made from organic matter or wastes, which can play a valuable role in reducing carbon dioxide emissions. These can be produced from a variety of feedstocks including, waste oils, agricultural residues, or energy crops. Biofuels can substitute conventional fossil fuels in sectors such as transport, providing a cleaner and more sustainable energy solution. However, it’s essential that biofuels are produced sustainably, to ensure their use results in a net reduction in CO2 emissions.
PRODUCT LIST :
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RENEWABLE HYDROGEN
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RENEWABLE AMMONIA
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RENEWABLE METHANOL
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SUSTAINABLE AVIATION FUEL
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HEAT
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OXYGEN
„UNDENDLICHE KOHLENSTOFFQUELLEN NUTZEN“
Wir treiben die Idee voran
Uwe Bratfisch
10 Jahre Erfahrung mit grünen Wasserstoffprojektn. Gründungsgesellschafter der Hy2Gen AG.
Thomas Hirt-Peterseim
Mit einem breiten Netzwerk aus 25 Jahren Start-Up Begleitung und betriebswirtschaftlichem Hintergrund.
OLAF LUSCHNIG
30 Jahre Forschung in Biogas und über 10 Jahre Entwicklung und Otimierung von Wasserstoff aus biogenen Quellen