Leaching Circuit Design

Leaching Circuit Design MCP Connector for Claude

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Design metal extraction leaching circuits by modeling kinetics and equipment requirements.

1 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing metal extraction leaching circuits. It allows users to evaluate ore feasibility using analyze_ore_feasibility, calculate physical tank requirements with calculate_tank_requirements, estimate chemical reagent needs via estimate_reagent_needs, and design heap leach operations using design_heap_leach. It bridges the gap between ore mineralogy and practical circuit configuration for gold and copper extraction.

leachingmetallurgymining-engineeringchemical-kineticsextraction

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

analyze_ore_feasibility

Determines if a specific ore mineralogy and metal content can realistically meet a given recovery target

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

Is it feasible to achieve 85% recovery from an ore with gold-bearing pyrite mineralogy and 5g/t gold content?

The target is feasible. The estimated kinetics show a rate constant of 0.15 and a reaction order of 1.2.

Calculate the tank volume needed for a CIP circuit with a feed rate of 500 tonnes/hour, 10 hours retention time, and 40% slurry density.

The total volume required is 1250 cubic meters, which would be distributed across 2 tanks of 625 cubic meters each.

How much cyanide is needed for 10,000 tonnes of ore with gold-bearing mineralogy?

The required reagent is cyanide, with a total mass of 5000 kg needed for the batch.

The server supports calculations for both Carbon-in-Pulp (CIP) and Carbon-in-Leach (CIL) agitated tank circuits, as well as Heap Leach configurations.

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