Membrane Separation Design

Membrane Separation Design MCP Connector for Claude

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Model and size membrane separation systems with transport equations.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for modeling and sizing membrane-based separation systems. It accounts for physical transport phenomena, including concentration polarization and fouling, to ensure accurate design. Use calculate_system_sizing to determine required membrane area, analyze_polarization_impact to evaluate flux degradation, evaluate_fouling_risk to predict operational lifespan, and get_separation_efficiency_metrics for recovery and rejection analysis.

membraneseparationfluid-dynamicsfiltrationengineering-design

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

analyze_polarization_impact

Analyze the impact of concentration polarization on membrane flux

calculate_system_sizing

Calculate required membrane area and system performance metrics

evaluate_fouling_risk

Evaluate the risk and impact of fouling on membrane performance

get_separation_efficiency_metrics

Get specific efficiency and recovery metrics for the separation process

See how to talk to your AI agent using Membrane Separation Design.

What is the required membrane area for a feed concentration of 50, a target permeate concentration of 5, a feed flow rate of 100, a permeability of 10, and a target permeate flow rate of 80?

The required membrane area is 850 square meters, with a stage cut of 0.8 and a separation efficiency of 0.9.

How much will concentration polarization reduce my flux if the bulk concentration is 10, the surface concentration is 15, and the membrane flux is 5?

The polarization modulus is 1.5, resulting in an effective flux reduction of 33.3%.

What is the fouling risk for a high-solids feed at 5 bar pressure with a membrane porosity of 0.4?

The fouling severity is Moderate, with an estimated flux decline rate of 0.05 per hour.

You can use the `calculate_system_sizing` tool by providing the feed concentration, target permeate concentration, feed flow rate, membrane permeability, and target permeate flow rate.

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