Toxic Release Modeling Engine

Toxic Release Modeling Engine MCP Connector for Claude

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Simulate toxic gas dispersion, evacuation zones, and exposure risks using Gaussian models.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides advanced atmospheric dispersion modeling for toxic gas releases. It uses Gaussian dispersion models to calculate how chemical clouds spread based on release rates, gas density, meteorology, and terrain. Users can use calculate_plume_concentration to find gas levels at specific coordinates, identify_evacuation_zones to map danger areas, evaluate_exposure_risk to assess population impact, and simulate_terrain_impact to adjust for surface roughness and elevation.

gas-dispersiontoxicologymeteorologygaussian-modelemergency-response

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

calculate_plume_concentration

Determines the concentration of the toxic gas at a specific geographic coordinate

evaluate_exposure_risk

Predicts the impact on a specific population or target area by combining concentration with exposure duration

identify_evacuation_zones

Maps out the geographic areas that must be evacuated based on lethal or injurious concentration thresholds

simulate_terrain_impact

Adjusts dispersion parameters based on the roughness and elevation of the environment

See how to talk to your AI agent using Toxic Release Modeling Engine.

What is the gas concentration at latitude 45.5, longitude -122.6?

The calculated concentration at the specified coordinates is 15.4 mg/m³.

Identify the evacuation zones for a chlorine release at 50 kg/s.

The evacuation zones cover a 2.5km radius downwind, with a high danger level in the immediate vicinity.

What is the risk to the population in the downtown area?

The risk category for the downtown area is Moderate, with a total exposure dose of 12.8 mg·min/m³.

The engine distinguishes between dense and buoyant gases. For dense gases, the model accounts for ground-hugging behavior and terrain depressions.

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