
Soil Contamination Assessment & Remediation Protocol
Assess soil contamination sites and generate defensible remediation protocols
What You Can Do
You can conduct comprehensive soil contamination assessments that synthesize field data, laboratory results, and hydrogeological conditions into actionable remediation strategies. The skill guides you through contamination profiling, exposure pathway analysis, technology selection, and the development of Remedial Action Plans (RAPs) or Corrective Action Plans (CAPs) that meet regulatory requirements and address site-specific constraints.
Features
systematically document physical, chemical, and biological contamination factors to establish baseline conditions
identify and evaluate direct contact, ingestion, inhalation, and groundwater pathways to receptors
evaluate in-situ vs. ex-situ options and chemical vs. biological approaches for feasibility and cost-effectiveness
calculate soil cleanup standards aligned with exposure scenarios and regulatory frameworks
create defensible technical documents with objectives, selected remedies, implementation schedules, and monitoring protocols
incorporate subsurface conditions, groundwater flow, and contaminant transport into remediation design
ensure assessments and recommendations align with EPA, state, and local environmental standards
structure technical findings for presentation to regulatory agencies, site owners, and legal teams
Example Output
Example 1: Contamination Summary
- Site: Former industrial facility, 2.5 acres
- Primary Contaminants: TCE (2,100 μg/kg), Chromium VI (850 μg/kg) in vadose zone
- Depth of Contamination: 8–22 feet below surface
- Risk Drivers: Groundwater exposure pathway to downgradient well; vapor intrusion to future buildings
- Recommended Remedy: In-situ chemical oxidation (chromium) + soil vapor extraction (TCE)
Example 2: Remediation Strategy Table
| Contaminant | Technology | Timeline | Cost Range | Effectiveness |
|---|---|---|---|---|
| TCE | Soil Vapor Extraction | 18–24 mo | $180K–$250K | 85% reduction |
| Chromium VI | In-situ Stabilization | 12–18 mo | $120K–$180K | 90% immobilization |
Example 3: RAP Executive Summary
- Selected Remedy: Combination in-situ and ex-situ approach
- Cleanup Targets: 5 μg/kg TCE (groundwater protection), 100 μg/kg Cr VI (direct exposure)
- Implementation: 30-day mobilization, 24-month active treatment, 5-year monitoring
- Success Criteria: Soil sampling showing 95% of area meets cleanup standards; groundwater monitoring shows contaminant flux decline
What's Included
- SKILL.md instruction file: detailed protocol for systematic assessment and remediation planning
- Site Assessment Template: standardized form for documenting contamination findings, exposure pathways, and site-specific conditions
- Remediation Technology Comparison Matrix: decision framework comparing in-situ vs. ex-situ and chemical vs. biological remedies
- RAP/CAP Outline: regulatory-compliant structure for Remedial Action Plans with objectives, selected remedies, and implementation schedules
- Risk Calculation Worksheets: tools for establishing risk-based cleanup targets and exposure scenario modeling
- Regulatory Compliance Checklist: EPA and state-specific requirements verification list
Who It's For
- Environmental Scientists — conducting Phase II ESAs and developing remediation strategies
- Remediation Engineers — designing and implementing soil cleanup systems and monitoring protocols
- Environmental Consultants — preparing technical reports and regulatory documentation for clients
- Hydrogeologists — assessing contaminant transport and groundwater impacts
- Site Managers — overseeing remediation projects and tracking compliance milestones
Best For
- Phase II Environmental Site Assessments (ESAs) requiring soil analysis and contamination profiling
- Remedial Action Plan (RAP) and Corrective Action Plan (CAP) development
- Remediation technology selection and feasibility assessment
- Risk-based soil cleanup standard calculation and exposure pathway analysis
- Regulatory compliance documentation and stakeholder communication
- Post-remediation soil health assessment and long-term monitoring design





