Carbon Capture Sizing Engine

Carbon Capture Sizing Engine MCP Connector for Claude

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Technical sizing engine for CO2 removal system dimensions, energy, and costs.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides technical sizing for carbon capture systems. It calculates physical vessel dimensions using get_system_dimensions, determines chemical needs via calculate_solvent_requirements, estimates power and heat needs with estimate_energy_demand, and provides economic analysis through calculate_capture_economics. It is designed for engineers designing amine-based or other CO2 removal technologies.

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

calculate_capture_economics

Provides the cost analysis for the carbon capture operation

calculate_solvent_requirements

Calculates the amount of chemical solvent needed to process the gas stream

estimate_energy_demand

Calculates the thermal and electrical energy needed to operate the system

get_system_dimensions

Determines the physical size of the capture equipment

See how to talk to your AI agent using Carbon Capture Sizing Engine.

What are the dimensions for a system capturing 90% of CO2 from a gas stream with a flow rate of 50 m3/s and a 15% CO2 concentration?

The absorber diameter is 3.5 meters with a height of 12.0 meters, and the stripper diameter is 2.8 meters with a height of 10.5 meters.

How much energy will be required for a capture system with a circulation rate of 150 kg/s?

The system requires 450 MW of thermal energy and 25 MW of electrical energy for operation.

What is the estimated cost per tonne of CO2 if the capital expenditure is 500 million dollars?

The estimated cost is 65 dollars per tonne of CO2 captured.

You can determine the physical size of absorbers and strippers, the required solvent circulation rate, the total energy demand, and the economic cost per tonne of CO2 captured.

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