Clean Energy Capability

Engineering

Designing for impact.

What we do

Support clean energy projects from pre-feasibility and FEED through detailed engineering management, process design, safety and system integration.

We support the engineering journey from early definition through FEED and into detailed engineering with trusted partners. Our role connects system design, process engineering, safety, controls and integration so the selected concept remains both technically credible and practical to deliver.

Our role is to create enough clarity for decision makers to commit resources, align stakeholders and move the project into its next stage with a stronger evidence base.

Service scope

Focused support for complex clean energy decisions.

(Pre)Feasibility to FEED

Develop the early engineering definition needed to reach the next project milestone with confidence.

Management of Detailed Engineering

Oversee detailed-engineering packages or act in owner’s-engineer and integration roles.

Specializations

Energy optimization, process design, safety systems, process control and electrolyzer integration.

References

Relevant project experience.

The reference projects below integrate the detailed scope and key facts previously presented in the project modals of the CRATOS CAN Clean Energy site.

Diagram for Green Hydrogen Production Plant for an Indigenous-Led Project

Reference Project

Green Hydrogen Production Plant for an Indigenous-Led Project

Project Summary

  • Green hydrogen production and liquefaction development in British Columbia
  • Engineering work integrated with project delivery, off-take and financing activities

Scope

  • Project management and consortium establishment
  • Offtake development
  • Financing facilitation and risk management
  • Electrolyzer integration engineering

Key Facts

  • Electrolyzer: 25 MW
  • Hydrogen: 10 t/day
  • Offtake: industry and heavy-duty mobility
  • CAPEX: approx. CAD 125 M
Diagram for Ammonia System Modelling and Design

Reference Project

Ammonia System Modelling and Design

Project Summary

  • Internal modelling capability developed for ammonia and hydrogen derivatives
  • Research, real-world data and system design combined with business-case validation

Scope

  • System design
  • Techno-economic modelling
  • Business-case analysis
  • Integration of ammonia and other derivatives

Key Facts

  • Electrolyser: up to 500 MW
  • Hydrogen: up to 75 kt/year
  • Ammonia: up to 475 kt NH₃/year
Diagram for Hydrogen and Oxygen Production for a Municipal Utility

Reference Project

Hydrogen and Oxygen Production for a Municipal Utility

Project Summary

  • Early-stage system design centred on oxygen demand with hydrogen as an additional value stream
  • Alternative designs evaluated through engineering and techno-economic analysis

Scope

  • Pre-feasibility
  • System modelling
  • Techno-economic feasibility
  • Project management

Key Facts

  • Electrolyser: to be defined
  • Hydrogen & oxygen output: to be defined
  • Applications: industry and transport
Portrait of Justin Cao

Your contact in Canada

Justin Cao

Hydrogen Engineering Consultant

Discuss your project directly with the CRATOS CAN Clean Energy team.

Contact the team