Site Remediation Planner

Site Remediation Planner MCP Connector for Claude

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Generates comprehensive remediation strategies, timelines, and cost estimates for contaminated sites.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides professional decision-support for environmental engineers and site managers. It connects AI agents to specialized remediation logic to calculate optimal cleanup strategies. Using plan_remediation, agents can generate full strategies including technology selection, estimated duration, and cost projections. The server also provides granular tools like evaluate_feasibility to test specific technologies against site conditions, calculate_timeline for duration modeling, and estimate_remediation_cost for financial forecasting based on volume and approach type.

remediationenvironmental-sciencesoil-cleanupcost-estimationsite-assessment

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

calculate_timeline

Calculates the expected time required to reach cleanup goals

estimate_remediation_cost

Provides a financial projection for the proposed remediation work

evaluate_feasibility

Determines if a specific remediation technology is suitable for the site

plan_remediation

Generates a full remediation strategy including technology selection, timeline, and cost

See how to talk to your AI agent using Site Remediation Planner.

Generate a remediation plan for a site with Lead concentrations at 500mg/kg and a cleanup goal of 100mg/kg. Soil permeability is low and groundwater is at 5 meters.

The recommended approach is active remediation using soil excavation and stabilization. The estimated duration is 14 months with a projected cost of $450,000.

Is thermal desorption feasible for a site contaminated with Heavy Metals and low soil permeability?

No, thermal desorption is not feasible for this site because heavy metals are non-volatile and require physical removal or stabilization instead.

Estimate the cost for an active remediation approach treating 5000 cubic meters of soil using soil excavation.

The estimated total cost for treating 5000 cubic meters via soil excavation is $320,000, including mobilization and energy expenses.

The decision is driven by the gap between current contaminant concentrations and cleanup goals, as well as site-specific factors like `soilPermeability`. If the gap is extreme or permeability is too low for natural movement, the engine prioritizes active remediation.

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