Precipitation Circuit Designer

Precipitation Circuit Designer MCP Connector for Claude

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Engineering tool for designing metal recovery precipitation circuits.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing hydrometallurgical precipitation circuits. It allows users to calculate reagent requirements, determine reactor dimensions, and evaluate kinetic feasibility for recovering metals like gold and copper. Use design_precipitation_circuit for a complete design plan, or analyze_kinetics_feasibility to verify if your planned retention time meets the target recovery rate.

gold-recoverycopper-recoverymerrill-crowereactor-designchemical-engineering

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

analyze_kinetics_feasibility

Evaluates if the desired recovery and retention time are chemically feasible

calculate_reactor_dimensions

Determines the physical size of the reactor needed for the circuit

design_precipitation_circuit

Performs a complete circuit design by integrating all inputs into a cohesive plan

get_reagent_requirements

Calculates the amount of reagent needed to achieve a specific metal recovery

See how to talk to your AI agent using Precipitation Circuit Designer.

Design a circuit for a solution with 5.0 g/L gold and 2.0 g/L copper using the merrill-crowe method with 95% recovery and a flow rate of 10 m3/h.

The complete circuit design requires 45.2 kg of zinc dust, a reactor volume of 15.5 m3, and a retention time of 1.55 hours.

How much reagent is needed for 2.0 g/L copper with 90% recovery using direct precipitation?

The required reagent mass is 12.4 kg with a molar ratio of 1.2.

Is a 2-hour retention time enough to recover 98% of gold?

No, the target recovery of 98% is not feasible with a 2-hour retention time for gold; a longer residence time is required.

The tool is optimized for gold and copper recovery using methods like `merrill-crowe` or direct precipitation.

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