Refinery Emission Inventory Engine

Refinery Emission Inventory Engine MCP Connector for Claude

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Quantify pollutant emissions from refinery operations using standardized emission factors.

5 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a specialized calculation engine for quantifying pollutant emissions within refinery environments. It integrates operational activity data with standardized emission factors, such as EPA AP-42, to provide precise inventory reports. Users can use get_pollutant_summary to view total emissions by species, get_source_contribution to identify primary emission sources, calculate_fugitive_emissions for equipment leak estimation, calculate_tank_storage_losses for storage tank analysis, and get_emission_trends to monitor historical pollutant changes over time.

emissionsrefineryepapollutioninventory

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

calculate_fugitive_emissions

Estimates emissions originating from equipment leaks rather than point sources

calculate_tank_storage_losses

Quantifies emissions from storage tank operations, accounting for working and standing losses

get_emission_trends

Analyzes how emission levels change over multiple time intervals

get_pollutant_summary

Provides a high-level view of total emissions grouped by pollutant type

get_source_contribution

) are emitting a specific pollutant. Identifies which specific emission sources are the primary contributors to the total inventory

See how to talk to your AI agent using Refinery Emission Inventory Engine.

What is the total emission summary for the current period?

The total aggregate mass for the current period is 450.5 kg, with SO2 being the primary pollutant at 120.2 kg.

Which sources are contributing most to NOx emissions?

The primary contributors to NOx are Stack_01 (45 kg) and Flare_Unit_B (30 kg).

Show me the monthly emission trends for VOCs.

VOC emissions for the last three months were: January (12 kg), February (15 kg), and March (14 kg).

The engine uses a combination of Tier 1 regulatory factors from EPA AP-42 standards and Tier 2 operational factors derived from specific refinery hardware specifications.