Roaster Circuit Design

Roaster Circuit Design MCP Connector for Claude

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Engineering tool for designing roasting circuits for refractory ores.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering calculations for designing roasting circuits used to treat refractory ores. It allows users to determine vessel dimensions using calculate_roaster_dimensions, manage gas flow with calculate_gas_handling_requirements, design environmental mitigation via design_off_gas_treatment, and monitor thermal stability with analyze_temperature_profile.

roastingrefractory-oreschemical-engineeringgas-handlingthermal-analysis

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

analyze_temperature_profile

Evaluates if the thermal energy released by oxidation remains within safe and effective operating limits

calculate_gas_handling_requirements

Determines the volumetric flow rates and velocity required for gas transport

calculate_roaster_dimensions

Determines the physical size and capacity of the roasting vessel

design_off_gas_treatment

Sizes the equipment needed to capture sulfur and meet environmental standards

See how to talk to your AI agent using Roaster Circuit Design.

Calculate the vessel dimensions for 50 tons of ore per hour with 5% sulfur and 2% carbon and a 4-hour residence time.

The required vessel diameter is 4.5 meters, the height is 12.0 meters, with a total volume of 190.85 cubic meters and a heating zone length of 15.5 meters.

What are the gas handling requirements for 100 tons/hr throughput at 850 degrees Celsius with 10% sulfur?

The volumetric flow rate is 12,450 m3/h with a gas velocity of 15.2 m/s and a pressure drop of 250 Pa.

Design an off-gas treatment system for a flow rate of 5000 m3/h with 2% sulfur concentration and a 99% capture target.

The scrubber capacity is 5200 m3/h, the reagent consumption rate is 45 kg/h, and the expected emission level is 0.0002%.

You can use the `calculate_roaster_dimensions` tool by providing the ore throughput, sulfur and carbon content, and the required residence time.

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