Cumene Plant Design Suite

Cumene Plant Design Suite MCP Connector for Claude

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Engineering tools for designing cumene production plants using alkylation kinetics.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a complete suite of chemical engineering tools for designing cumene (isopropylbenzene) production facilities. It uses precise alkylation kinetics to determine reactor specifications via calculate_reactor_design, estimates zeolite catalyst needs with estimate_catalyst_requirements, predicts chemical outputs using calculate_yield_and_byproducts, and optimizes feedstock ratios with optimize_feedstock_ratio. It accounts for critical processes like transalkylation and PDPB removal to ensure high yield and product purity.

chemical-engineeringcumenealkylationzeoliteplant-design

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

calculate_reactor_design

Determines the physical specifications of the alkylation reactor required to meet target production

calculate_yield_and_byproducts

Predicts the chemical output of the plant, including cumene, PIPB, and PDPB

estimate_catalyst_requirements

Calculates the specific mass and type of zeolite catalyst needed for the plant

optimize_feedstock_ratio

Determines the ideal molar ratio of benzene to propylene to maximize cumene selectivity and minimize byproducts

See how to talk to your AI agent using Cumene Plant Design Suite.

Calculate the reactor design for a capacity of 50000 tons per year with 60000 tons of benzene and 30000 tons of propylene available.

The required reactor volume is 125 m³, with a residence time of 2.5 hours and a catalyst mass of 15,000 kg.

What is the expected yield if I have a target capacity of 10000 units, 0.95 transalkylation efficiency, and 0.98 PDPB removal rate?

The predicted cumene yield is 9,450 units with an overall efficiency of 94.5%.

Find the ideal benzene to propylene ratio for a target capacity of 20000 with a desired selectivity of 0.98.

The ideal benzene to propylene ratio is 6:1, requiring 120,000 units of benzene and 20,000 units of propylene.

You can use the `calculate_reactor_design` tool by providing your target capacity and the availability of benzene and propylene.

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