Ethylene Oxide Plant Designer

Ethylene Oxide Plant Designer MCP Connector for Claude

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Engineering design tool for simulating and sizing Ethylene Oxide production facilities.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing Ethylene Oxide (EO) production plants. It allows engineers to simulate reactor sizing, catalyst requirements, process efficiency, and safety constraints based on feedstock availability and catalyst selection. Use calculate_reactor_dimensions to determine vessel size, estimate_catalyst_requirements for silver catalyst mass, analyze_process_efficiency to predict selectivity, and generate_safety_envelope to establish safe operating limits for both air and oxygen-based processes.

ethylene-oxidechemical-engineeringreactor-designcatalysisprocess-safety

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

analyze_process_efficiency

Predicts the selectivity and conversion rates for the given inputs

calculate_reactor_dimensions

Determines the physical size and design parameters of the reactor vessel

estimate_catalyst_requirements

Calculates the necessary mass and volume of silver catalyst needed to meet production goals

generate_safety_envelope

Defines the safe operating limits to prevent explosion or thermal runaway

See how to talk to your AI agent using Ethylene Oxide Plant Designer.

Calculate the reactor dimensions for 50 units of ethylene using the oxygen process and the standard silver catalyst.

The reactor requires a volume of 125.5 m³, a height of 12.0 m, a diameter of 3.6 m, and a heat exchange area of 45.2 m².

How much silver catalyst is needed for an annual capacity of 10,000 tons using the high-activity catalyst?

The required catalyst mass is 4,500 kg with a total volume of 5,200 liters and a loading density of 0.86 kg/L.

What is the expected selectivity for 30 units of ethylene using the air process?

The predicted selectivity is 78.5% with an ethylene conversion rate of 12.2% and a CO2 yield of 21.5%.

You can use the `calculate_reactor_dimensions` tool by providing the ethylene availability, the oxygen source (air or oxygen), and the specific catalyst system.

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