Nitric Acid Plant Design Engine

Nitric Acid Plant Design Engine MCP Connector for Claude

A+

Technical design engine for industrial nitric acid production using the Ostwald process.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing nitric acid production facilities. It covers the entire Ostwald process lifecycle, from initial ammonia oxidation to final environmental compliance. Users can use calculate_oxidation_reactor_specs to determine reactor scale, calculate_absorption_tower_dimensions for absorption stage requirements, and design_nox_abatement_system to meet emission standards. It also includes compare_pressure_processes to evaluate single vs dual-pressure configurations.

ostwald-processnitric-acidchemical-engineeringindustrial-designammonia-oxidation

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

calculate_absorption_tower_dimensions

Determines the physical dimensions and requirements for the absorption tower

calculate_oxidation_reactor_specs

Determines the required scale and parameters for the ammonia oxidation reactor

compare_pressure_processes

Evaluates the efficiency and scale differences between single-pressure and dual-pressure designs

design_nox_abatement_system

Calculates the requirements for reducing nitrogen oxide emissions

See how to talk to your AI agent using Nitric Acid Plant Design Engine.

Calculate the reactor specs for 500 tons of ammonia and 2000 tons of annual capacity.

The required reactor volume is 45 cubic meters with a catalyst mass of 120 kg, operating at 850°C with an expected NO yield of 96%.

What are the absorption tower dimensions for a 60% concentration product and 5000 m3/h gas flow in a dual-pressure setup?

The absorption tower requires a height of 12 meters and a diameter of 2.5 meters, with a required water flow of 150 m3/h and 98% absorption efficiency.

Design an abatement system for a tail gas flow of 1000 m3/h with an emission limit of 50 ppm NOx.

The system requires 25 kg of reagent, a scrubber volume of 15 m3, and will achieve a reduction efficiency of 99.2%.

The engine supports both single-pressure and dual-pressure Ostwald process configurations.

Related Connectors