Hydrotreater Design Engine

Hydrotreater Design Engine MCP Connector for Claude

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Design hydrotreating units with kinetic modeling for sulfur removal.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing hydrotreating units. It uses hydrotreating kinetics to calculate critical parameters such as reactor volume, hydrogen consumption, and catalyst life. Engineers can use calculate_reactor_volume to size catalyst beds, estimate_hydrogen_consumption to plan hydrogen supply, predict_catalyst_life to manage maintenance cycles, and optimize_operating_conditions to balance reaction rates with catalyst longevity. It connects AI agents to precise chemical engineering calculations for desulfurization processes.

hydrotreatingdesulfurizationkineticscatalystrefinery

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

predict_catalyst_life

Estimates the time remaining before the catalyst activity drops below the threshold required to meet the sulfur target

calculate_reactor_volume

Determines the required volume of the catalyst bed needed to achieve the target sulfur reduction

estimate_hydrogen_consumption

Calculates the amount of hydrogen required for the desulfurization process

optimize_operating_conditions

Recommends the optimal temperature and pressure to balance reaction rate and catalyst longevity

See how to talk to your AI agent using Hydrotreater Design Engine.

What is the required reactor volume for a feed flow of 500 m3/h, initial sulfur of 1.5%, target sulfur of 0.1%, LHSV of 1.5, and catalyst activity of 0.9?

The required reactor volume is 500 m3 with a contact time of 3.0 hours.

Estimate the hydrogen needed for removing 50 kg of sulfur from a 1000 m3/h feed with a stoichiometric ratio of 3.0.

The required hydrogen is 150 kg with an excess ratio of 1.1.

Predict catalyst life if initial activity is 1.0, deactivation rate is 0.01 per month, and minimum required activity is 0.6.

The estimated catalyst life is 40 months with a remaining activity margin of 0.0.

You can use the `calculate_reactor_volume` tool by providing the feed flow rate, initial and target sulfur levels, LHSV, and catalyst activity.

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