Flotation Circuit Designer

Flotation Circuit Designer MCP Connector for Claude

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Design mineral flotation circuits by modeling kinetic separation based on ore characteristics.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for mineral processing. It allows AI agents to design complete flotation circuits by calculating physical parameters like residence time and cell count. Using calculate_circuit_requirements, agents can determine the necessary circuit configuration. The server also supports balancing recovery and grade through optimize_stage_distribution, verifying feasibility with validate_liberation_efficiency, and predicting final outcomes via simulate_circuit_performance.

mineralogyflotationmetallurgykineticscircuit-design

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

calculate_circuit_requirements

Determines the fundamental physical parameters of the flotation circuit based on mineral properties and goals

optimize_stage_distribution

Adjusts the proportion of the circuit dedicated to Rougher, Scavenger, and Cleaner stages to balance recovery vs. grade

simulate_circuit_performance

Predicts the final concentrate grade and recovery for a specific circuit configuration

validate_liberation_efficiency

Assesses if the proposed liberation size is sufficient to achieve the recovery target

See how to talk to your AI agent using Flotation Circuit Designer.

Calculate the requirements for a circuit with a flow rate of 500 m3/h, a liberation size of 75 microns, and a recovery target of 85%.

The circuit requires a total residence time of 120 minutes, consisting of 5 cells with a total volume of 1000 m3, configured with rougher, scavenger, and cleaner stages.

Is it feasible to achieve 90% recovery with a liberation size of 50 microns for this mineralogy?

Yes, the estimated recovery at 50 microns is 92%, making the 90% target feasible.

Predict the performance of a circuit optimized for grade.

The predicted final grade is 88% with a recovery of 82% and a mass pull of 5.5%.

You can use the `calculate_circuit_requirements` tool. By providing the mineralogy, liberation size, recovery target, and flow rate, the tool calculates the total residence time and the required number of cells.

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