Proximus renewables on-site study

As part of Proximus’s goal to source 100% of its electricity from renewable energy sources in Belgium and in accordance with our RE100 commitment, INGENIUM was selected to study on-site renewable energy generation systems for all Proximus sites in Belgium. The following systems will be considered: - Solar panels - Wind turbines - CHP - Fossil fuel absorption cooling - Fossil fuel-based systems using steam reforming and fuel cells - Fossil fuel CHP systems using steam reforming and fuel cells in combination with absorption cooling. INGENIUM developed a model that enables the automated screening of the entire portfolio for the various technologies mentioned above. The appropriate sizing of each installation was automatically determined through sensitivity analyses.

Client

Proximus

Location

Brussels

Services
No items found.

As part of Proximus’s goal to source 100% of its electricity from renewable energy sources in Belgium and in accordance with our RE100 commitment, INGENIUM was selected to study on-site renewable energy generation systems for all Proximus sites in Belgium. The following systems will be considered:

  • Solar Panels
  • Wind turbines
  • CHP
  • Fossil Fuel Absorption Cooling
  • Fossil fuel, based on steam reforming and a fuel cell
  • Fossil fuel combined heat and power (CHP), based on steam reforming and a fuel cell in combination with absorption cooling.

INGENIUM developed a model that enables the automated screening of the entire portfolio using the various techniques mentioned above. The appropriate sizing of each installation was automatically determined through sensitivity analyses.

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Proximus renewables on-site study

As part of Proximus’s goal to source 100% of its electricity from renewable energy sources in Belgium and in accordance with our RE100 commitment, INGENIUM was selected to study on-site renewable energy generation systems for all Proximus sites in Belgium. The following systems will be considered:

  • Solar Panels
  • Wind turbines
  • CHP
  • Fossil Fuel Absorption Cooling
  • Fossil fuel, based on steam reforming and a fuel cell
  • Fossil fuel combined heat and power (CHP), based on steam reforming and a fuel cell in combination with absorption cooling.

INGENIUM developed a model that enables the automated screening of the entire portfolio using the various techniques mentioned above. The appropriate sizing of each installation was automatically determined through sensitivity analyses.

Proximus renewables on-site study

As part of Proximus’s goal to source 100% of its electricity from renewable energy sources in Belgium and in accordance with our RE100 commitment, INGENIUM was selected to study on-site renewable energy generation systems for all Proximus sites in Belgium. The following systems will be considered: - Solar panels - Wind turbines - CHP - Fossil fuel absorption cooling - Fossil fuel-based systems using steam reforming and fuel cells - Fossil fuel CHP systems using steam reforming and fuel cells in combination with absorption cooling. INGENIUM developed a model that enables the automated screening of the entire portfolio for the various technologies mentioned above. The appropriate sizing of each installation was automatically determined through sensitivity analyses.

Client

Proximus

Location

Brussels

Services
No items found.

Proximus renewables on-site study

As part of Proximus’s goal to source 100% of its electricity from renewable energy sources in Belgium and in accordance with our RE100 commitment, INGENIUM was selected to study on-site renewable energy generation systems for all Proximus sites in Belgium. The following systems will be considered:

  • Solar Panels
  • Wind turbines
  • CHP
  • Fossil Fuel Absorption Cooling
  • Fossil fuel, based on steam reforming and a fuel cell
  • Fossil fuel combined heat and power (CHP), based on steam reforming and a fuel cell in combination with absorption cooling.

INGENIUM developed a model that enables the automated screening of the entire portfolio using the various techniques mentioned above. The appropriate sizing of each installation was automatically determined through sensitivity analyses.

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