Sour Water Stripper Design Tool

Sour Water Stripper Design Tool MCP Connector for Claude

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Design and size Sour Water Stripper (SWS) units for acid gas removal.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing Sour Water Stripper (SWS) units. It allows users to calculate column dimensions, steam requirements, and effluent quality for both single-stage and high-efficiency two-stage configurations. Use get_single_stage_design for standard sizing, get_two_stage_design for high-efficiency requirements, or compare_designs to evaluate the trade-offs between CAPEX and OPEX. You can also use validate_effluent_compliance to ensure your stripped water meets environmental limits.

sour-waterstrippingh2s-removalammonia-removaldistillation

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

get_two_stage_design

Calculates the dimensions and requirements for a high-efficiency two-stage stripping configuration

validate_effluent_compliance

Checks if a given stripped water quality meets the required environmental or process specifications

get_single_stage_design

Calculates the dimensions and requirements for a standard single-stage stripping column

compare_designs

Provides a side-by-side comparison of single-stage and two-stage configurations

See how to talk to your AI agent using Sour Water Stripper Design Tool.

Calculate a single-stage design for 100 m3/h of sour water with 50 ppm H2S and 100 ppm NH3, targeting 5 ppm H2S and 10 ppm NH3.

The single-stage design requires a column diameter of 1.2 meters and a height of 15 meters, with a steam flow rate of 12.5 m3/h to achieve the target quality.

Compare single-stage and two-stage designs for 50 m3/h water, 100 ppm H2S, 200 ppm NH3, targeting 2 ppm H2S and 5 ppm NH3.

The two-stage design is recommended for this high-ammonia load as it provides significantly better steam efficiency despite the higher initial capital cost.

Is a stripped water sample with 8 ppm H2S and 12 ppm NH3 compliant with limits of 10 ppm H2S and 15 ppm NH3?

Yes, the water is compliant as both H2S and NH3 concentrations are below the specified limits.

A two-stage design is recommended when dealing with high ammonia concentrations or when extremely strict effluent limits must be met, as it optimizes steam consumption and separation efficiency.

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