CO2 Compression & Transport Designer

CO2 Compression & Transport Designer MCP Connector for Claude

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Design efficient CO2 compression and pipeline transport systems for CCS/CCUS applications.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for Carbon Capture and Storage (CCS) transport design. It allows AI agents to calculate necessary compression stages and power requirements using calculate_compression_requirements. Users can determine physical pipeline dimensions and arrival pressures with design_pipeline_parameters, verify phase stability (dense or supercritical) via validate_phase_stability, and perform CAPEX/OPEX trade-off analysis using optimize_transport_cost.

ccsccusco2pipelinecompressionthermodynamics

4 tools expose this connector's capabilities to your AI agent.

validate_phase_stability

Verifies if the CO2 will remain in the desired dense or supercritical phase throughout the transport route

calculate_compression_requirements

Determines the necessary compression configuration to move CO2 from the source to the transport pressure

design_pipeline_parameters

Calculates the physical dimensions and operating conditions for the transport pipeline

optimize_transport_cost

Evaluates the trade-off between pipeline diameter (CAPEX) and compression power (OPEX)

See how to talk to your AI agent using CO2 Compression & Transport Designer.

Calculate the compression requirements for 500 kg/s of CO2 moving from 5 MPa to 15 MPa.

The system requires 3 compression stages with a total power requirement of 42.5 MW to reach the target pressure.

What is the optimal pipeline diameter for a 100 km transport route at 500 kg/s?

The optimal diameter for this route is 0.45 meters, ensuring the arrival pressure remains above the critical threshold.

Will CO2 stay supercritical at 10 MPa and 35 degrees Celsius?

Yes, the CO2 remains in a stable supercritical state with a criticality margin of 1.2 MPa.

You can use the `calculate_compression_requirements` tool by providing the source pressure, target pressure, and mass flow rate.

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