Electrowinning Cell Designer

Electrowinning Cell Designer MCP Connector for Claude

A+

Calculates electrochemical parameters and physical dimensions for metal recovery cells.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for designing electrowinning circuits used in metal recovery. It uses Faraday's Law to determine the electrical current needed for specific production rates via calculate_production_current. It also calculates the necessary cathode surface area using design_cathode_surface, determines physical cell configurations with calculate_cell_dimensions, and estimates energy needs through estimate_power_requirements.

electrowinningelectrochemistrymetal-recoverychemical-engineeringcell-design

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

calculate_cell_dimensions

Determines the physical configuration of the cell, including electrode spacing

calculate_production_current

Determines the total electrical current required to achieve a specific metal production rate

design_cathode_surface

Calculates the necessary cathode surface area based on desired current density

estimate_power_requirements

Estimates the electrical energy consumption for the electrowinning process

See how to talk to your AI agent using Electrowinning Cell Designer.

How much current do I need to produce 50kg of copper per hour with an efficiency of 0.95 and an equivalent weight of 0.327?

To produce 50kg of copper per hour at 95% efficiency, you require 161,111.11 Amperes.

What is the power demand for a cell running at 5000A and 3.5V?

The instantaneous power demand for the cell is 17.5 kW.

Calculate the cathode area needed for 1000A at a current density of 250 A/m².

The required cathode surface area is 4 m².

You can use the `calculate_production_current` tool by providing the target metal mass rate, the metal's electrochemical equivalent weight, and the expected current efficiency.

Related Connectors