Butadiene Extraction Plant Design Engine

Butadiene Extraction Plant Design Engine MCP Connector for Claude

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A specialized design engine for modeling extractive distillation units to recover high-purity butadiene.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a complete suite of engineering tools for designing butadiene extraction plants. It allows users to evaluate C4 feedstock suitability using analyze_feedstock_composition, identify the most efficient extraction agents with select_optimal_solvent, calculate physical tower dimensions via design_extraction_column, and predict final product quality through calculate_process_yield. It is designed to handle complex extractive distillation modeling, including solvent selection (NMP, DMF, ACN) and critical impurity management.

butadienedistillationchemical-engineeringc4-hydrocarbonssolvent-selection

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

analyze_feedstock_composition

calculate_process_yield

design_extraction_column

select_optimal_solvent

See how to talk to your AI agent using Butadiene Extraction Plant Design Engine.

Evaluate a C4 cut with 0.4 butadiene, 0.3 butenes, and 0.3 butanes at a capacity of 500 units.

The feedstock suitability score is 0.75, with an estimated recovery potential of 92%.

What is the best solvent for a feedstock with 0.5 butadiene and a target purity of 0.995?

NMP is the recommended solvent, offering a selectivity index of 0.88 and a boiling point suitable for this purity target.

Design a column using NMP with a feed flow of 100 and a solvent-to-feed ratio of 5 for 0.995 purity.

The designed column will have a diameter of 2.4 meters, 35 trays, and a total height of 18.5 meters.

You can use the `analyze_feedstock_composition` tool by providing the molar fractions of your C4 cut and the required plant capacity.

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