Hydrogen Peroxide Plant Designer

Hydrogen Peroxide Plant Designer MCP Connector for Claude

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Automated design tool for industrial hydrogen peroxide production using the Anthraquinone (AO) process.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing hydrogen peroxide production facilities. It automates the Anthraquinone (AO) process cycle by calculating critical parameters for the organic working solution, reactor sizing, and extraction efficiency. Users can use calculate_working_solution to determine chemical requirements, design_reactor for physical sizing of hydrogenation and oxidation units, estimate_extraction for phase transfer parameters, and generate_stabilization to ensure product integrity through proper stabilizer selection.

hydrogen-peroxideao-processchemical-engineeringplant-designindustrial-automation

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

calculate_working_solution

Determines the necessary chemical composition and volume of the organic working solution based on production targets

design_reactor

Calculates the physical sizing and operational parameters for the hydrogenation and oxidation reactors

estimate_extraction

Calculates the required extraction stage parameters to move hydrogen peroxide from the organic to the aqueous phase

generate_stabilization

Determines the amount of stabilizers needed to maintain product integrity at the target concentration

See how to talk to your AI agent using Hydrogen Peroxide Plant Designer.

Calculate the working solution requirements for a 50,000 tonne capacity plant using Standard Tier technology.

The required working solution volume is 1250 cubic meters, with an anthraquinone mass of 45000 kg and a solvent ratio of 0.15.

What are the reactor dimensions for a working solution volume of 500 cubic meters with a 60 minute cycle time?

The hydrogenation reactor volume required is 250 cubic meters and the oxidation reactor volume is 300 cubic meters, with a residence time of 45 minutes.

Estimate the extraction efficiency for a 35% concentration and 1000 kg working solution mass.

The extraction stage requires a volume of 150 cubic meters, an aqueous flow rate of 45 m3/h, and an expected yield of 94%.

This tool is specifically designed for the Anthraquinone (AO) process, the industrial standard for hydrogen peroxide production.

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