Adsorption System Designer

Adsorption System Designer MCP Connector for Claude

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Professional engineering tool for designing adsorption-based separation systems.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a complete suite of engineering tools for designing adsorption-based separation systems. It allows users to calculate the necessary calculate_adsorbent_mass for specific throughputs, determine physical column dimensions using design_bed_geometry, predict operational limits with estimate_breakthrough_time, and verify system feasibility by using evaluate_pressure_drop. It accounts for critical chemical engineering factors like the Mass Transfer Zone (MTZ), adsorption isotherms, and pressure drop across the packed bed.

adsorptionchemical-engineeringseparation-systemsmass-transferprocess-design

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

calculate_adsorbent_mass

Determines the minimum amount of adsorbent required to meet specific process requirements

design_bed_geometry

Calculates the physical dimensions of the adsorption column

estimate_breakthrough_time

Predicts when the system will reach the breakthrough point

evaluate_pressure_drop

Checks if the designed system will suffer from excessive resistance to flow

See how to talk to your AI agent using Adsorption System Designer.

How much adsorbent mass do I need for a throughput of 1000L/cycle, an initial concentration of 50mg/L, a target of 5mg/L, and a capacity of 10mg/g?

The required adsorbent mass is 4500g, including a safety factor to account for the mass transfer zone.

Calculate the bed dimensions for 5000g of adsorbent with a density of 0.5g/cm3 and a max velocity of 2cm/s.

The designed bed has a height of 40cm and a diameter of 12.6cm, resulting in a total bed volume of 5026.5cm3.

When will the system reach breakthrough if the bed height is 50cm and the MTZ is 5cm?

The predicted breakthrough time is 120 hours based on the effective capacity of the bed.

To use `calculate_adsorbent_mass`, you need the initial adsorbate concentration, the target effluent concentration, the adsorbent capacity, and the desired throughput per cycle.

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