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Hydrogenerous ApS
Vinkelvej 240, Vinkel
8800 Viborg
Denmark

mail@hydrogenerous.com

Office phone +45 7734 6020

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Direct carbon utilization, Hydrogenerous Green Hydrogen
Direct carbon utilization, Hydrogenerous Green Hydrogen

Factory with CO2 capture, temporary storage and utilization of CO2 in the submerged pool reactor with flow system for water and CO2 as well as hydrogen tank for use for electricity or green fuel.

Direct carbon utilization, Hydrogenerous Green Hydrogen
Direct carbon utilization, Hydrogenerous Green Hydrogen

We must remove more CO2 than we emit. In chemistry, affinity is the tendency of two substances to react with each other.

  1. With this technology, we can take the lead in becoming the leading climate-negative nations.

  2. It not only removes CO2, but we also use it for zero-emission green fuels and electricity.

  3. The chart shows what can be used to create green hydrogen.

CCU Carbon Capture Utilization

Direct carbon utilization, Hydrogenerous Green Hydrogen
Direct carbon utilization, Hydrogenerous Green Hydrogen

Overcoming the Cost of CCS

Can CO2 be utilized as a beneficial resource rather than a threat? CCS is Carbon Capture Storage

Direct carbon utilization, Hydrogenerous Green Hydrogen

Key Insights.
What is happening and what is important to understand?

Many people understand that trees and forests naturally absorb carbon dioxide from the atmosphere.

This process is commonly referred to as absorption in scientific circles. Similarly, Hydrogenerous employs a chemical technique to absorb CO2, utilizing it in a manufacturing process to produce green hydrogen.

Essentially, this means CO2 is prevented from entering the atmosphere and is instead transformed into a valuable resource for producing green hydrogen, thereby reducing CO2 emissions.

What transformative opportunities could this unlock for Denmark, Germany, the EU, and the global community?

Is it cost-effective, and what potential savings can we achieve?

Direct carbon utilization, Hydrogenerous Green Hydrogen

Effective use of CO2 capture for sustainable hydrogen production!

"Our technology offers groundbreaking advantages in CO2 absorption and utilization:

  • Energy Independent: A pure chemical reaction, requiring no electricity for production.

  • Ambient Operation: Functions efficiently at normal room temperature.

  • Eco-Friendly: Entirely harmless to the environment and natural ecosystems.

  • Compact Footprint: Requires minimal spatial allocation, ideal for diverse sites.

  • Discreet Integration: Can be installed underground, making it virtually invisible."

What We Save and Achieve:

  • Energy Independence: Green H2 production without reliance on wind or solar energy.

  • Revenue Generation: Transforms CO2 from a liability into a valuable income stream.

  • Optimized CO2 Management: Eliminates the need for long-term CO2 storage, enabling direct utilization.

  • Accelerated Climate Action: Provides a significant contribution to global climate objectives.

Direct carbon utilization, Hydrogenerous Green Hydrogen

Utilization of CO2 will create growth

Hydrogenerous delivers sustainable, affordable energy, reducing fossil fuel dependence and powering global progress responsibly.

Utilization of Carbon Dioxide (CO2)

Direct carbon utilization, Hydrogenerous Green Hydrogen

Agenda

Introduction

The Power of CO2

Effective Utilization of CO2 Capture (CCU)

Importance

Benefits

Direct carbon utilization, Hydrogenerous Green Hydrogen

The Power of Carbon Dioxide

Communicating the process of CO2 and H2O utilization to produce green hydrogen with a catalyst.

What does affinity mean in the chemical procedure in the reactor?

The meaning is:

  • That CO2 and H2O must be continuously added, and that these are the only continuous or ongoing inputs to the chemical mixture in the reactor tank.

  • 24/7 production regardless of wind and weather conditions.

  • The chemical mixture remains in the reactor and is reused daily.

  • It is extremely efficient and operationally reliable.

  • "Understanding hydrogen production methods:

  • Electrolysis: Requires significant electrical input, alongside H2O, ferrous materials, and heating.

  • Hydrocarbon Reforming: Involves combustion of natural gas or diesel, producing Gray or Blue Hydrogen.

  • The Hydrogenerous method stands apart by harnessing CO2 in a chemical reaction to produce hydrogen, with the distinct advantage of operating without any electricity."

"Our unique chemical production process offers unparalleled advantages:

  • Zero Electricity Demand: A pure chemical reaction.

  • Ambient Temperature Operation: No heating or cooling required.

  • Eco-Neutral: Harmless to the environment and nature.

  • Minimal Footprint: Requires small operational areas.

  • Subterranean Option: Can be discreetly submerged underground."

Key Takeaways

Key Takeaways:

  • Significant CO2 Utilization: Demonstrates the substantial amount of CO2 that can be effectively consumed.

  • High Hydrogen Output: Illustrates a robust capacity for green hydrogen production, directly addressing energy demands.

  • Exponential Revenue Growth: Projects a rapid and substantial increase in sales income, highlighting the strong market potential and profitability.

(KPI) Scenario

Key Performance Indicators (KPI) Scenario: Green Hydrogen Production & Sales
 
Our innovative technology presents a compelling economic and environmental case for large-scale green hydrogen production, transforming CO2 into a valuable resource.
1. Cost Efficiency:

  • Hydrogen (H2) Production Price: $0.75 per KG

    • This underlines our highly competitive production cost, making green hydrogen accessible and profitable.

Direct carbon utilization, Hydrogenerous Green Hydrogen

KPI Data Link

At Hydrogenerous, we  analyze our Key Performance Indicators (KPIs) to provide you with an accurate picture of our green hydrogen production and sales performance. We encourage you to check our KPI data link for comprehensive information on our advancements and contributions to the green energy landscape.

Us in Numbers

$10M+

Empowering Scale-Up for a Greener Future

23

Our Team-members

3

Collaborating for a Sustainable Future with Universities

28

Years of Development Experience

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