Sulfuric Acid Plant Design

Sulfuric Acid Plant Design MCP Connector for Claude

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Professional engineering tool for designing sulfuric acid production facilities using the contact process.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing industrial sulfuric acid plants. It covers the entire contact process, from initial sulfur combustion to final acid absorption. Use get_burner_specs to define combustion chamber requirements, get_converter_specs to calculate catalytic reactor dimensions, get_absorption_tower_specs for absorption equipment design, and get_energy_recovery_profile to estimate steam generation potential from exothermic reactions.

sulfuric-acidcontact-processchemical-engineeringplant-designindustrial-automation

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

get_absorption_tower_specs

Designs the equipment used to absorb sulfur trioxide into acid

get_burner_specs

Determines the physical and operational requirements for the sulfur combustion unit

get_converter_specs

Calculates the dimensions and catalytic requirements for the oxidation reactor

get_energy_recovery_profile

Estimates the thermal energy available for recovery from the exothermic process

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

Calculate the burner requirements for a plant processing 50,000 tons of granular sulfur per year.

The combustion chamber volume required is 125 m3, with a required air flow of 45,000 Nm3/h and an estimated heat output of 15.5 MW.

What are the converter specs for a double absorption plant with 10,000 tons of sulfur capacity and 99.5% target conversion?

For a double absorption design, the converter requires a catalyst volume of 45 m3, 4 stages, and a reactor height of 12 meters.

Design an absorption tower for a 500 Nm3/h SO3 flow rate at 98% concentration using double absorption.

The absorption tower design requires a diameter of 2.5 meters, a height of 15 meters, and an acid circulation rate of 120 m3/h.

The tool covers the standard contact process, including sulfur burner design, catalytic converter sizing, absorption tower specifications, and energy recovery estimation.

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