Princeton Groundwater, Inc.

Remediation Course

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Princeton Groundwater`s Remediation Course is the most comprehensive course on remediation available. It is taught twice a year in the spring (typically May) in Las Vegas and in the fall (typically October/November) in Miami. During 43 hours of classroom instruction, every aspect of remediation is covered including high resolution, three-dimensional hydrogeochemical characterization, Federal/State regulations, and practical design details of all remediation technologies. All aspects of Indoor Air Vapor Intrusion, Petroleum Vapor Intrusion and mitigation are also covered. Friday afternoon is an optional free course on computer-simulated remedial alternatives such as Natural Attenuation, Pump & Treat, Interceptor Trenches and complete Hydraulic Containment using barriers and capping. The course also covers many essential topics such as strategies for cost effective solutions, which are not found in any other courses or books

  • Remediation Experts
  • Groundwater Hydrologists
  • Geologists
  • Engineers
  • Chemists
  • Environmental Scientists
  • State/Federal Regulators
  • Project Managers
  • Compliance Program Managers
  • Industrial Site Owners

The objective of this course is to teach remediation from the key methodologies to collect 3D hydrogeochemical data to build a conceptual site model (CSM), through selecting and designing remediation systems based on chemical, geological and biological site conditions and state/federal regulations. In addition, students may optionally participate in a free bonus session Friday afternoon using laptop computers and popular sophisticated software to hands-on simulate remediation geohydrology, groundwater and contaminant pathways, capture zones, mass transport, natural attenuation, and alternative remediation designs.

  • Practical remediation strategies and options drawn from hundreds of case histories
  • The geological and hydrochemical factors applicable to remedial designs for cleaning up soil and groundwater
  • Field methods to fully characterize aquifers, source zones and plumes to allow selection and design of effective remedial measures and set achievable cleanup levels
  • Ability to select remediation systems based on variable hydrogeology, life cycle design, air/water carriers, biodegradation, and monitored natural attenuation for dissolved phase, light and dense non-aqueous phase liquids (NAPLs)
  • Strategic approach to cost effective remedial design
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  • Hands-on experience with 2D and 3D computer simulations of flow and mass transport for applications in remediation strategies, design and field investigations. Natural attenuation simulations for use in Risk-Based Corrective Action (RBCA) studies

The Remediation Course uniquely integrates the topics of heterogeneous geohydrology, aquifer / source / plume characterization, remediation technologies / strategies / designs, and computer simulation software. The result is the acknowledged premier course on remediation.

With some exceptions, the class generally meets daily from 8:00 A.M. to 11:30 A.M. and from 1:00 P.M. to 4:30 P.M. Monday through Thursday with half-hour coffee breaks at 9:30 A.M. and 2:30 P.M. and lunch from 11:30 A.M. to 1:00 P.M. After short breaks at 4:30 P.M., Monday extends to 6:00 P.M. and Tuesday extends to 7:00 P.M. Due to the exceptional amount of material, after a short break, the class on Wednesday goes to 6:00 P.M., followed by a one hour dinner break and additional lectures from 7:00 P.M. to 9:10 P.M. The formal part of the course ends on Friday at 11:30 A.M. Friday afternoon from 12:00-5:30 P.M. is an optional, free hands-on computer laboratory session. Students will be introduced to the practical, remediation applications of Visual Modflow, and the EPA/Air Force’s Bioscreen/Bioscreen-AT software packages.

  • Fundamental and Advanced Concepts of Remediation Hydrogeology
  • Fundamental and Advanced Concepts of Fate and Transport
  • Site Characterization methods to Determine 3D Hydraulic and geochemical Parameters for Remediation Design
  • DNAPL and LNAPL Source Zones and Dissolved Plumes
  • Limitations and Biases of Traditional Characterization and Monitoring of Dissolved Contaminant Plumes
  • Flux-Based (Mass Flux and Mass Discharge) Corrective Action and Remediation Vs. Risk-Based Correction Action (RBCA) Based on Monitoring Well Concentrations
  • The Remedial Investigation (RI)/Feasibility Study (FS) Process
  • Advanced High Resolution 3D Site Characterization Field Methods to Support Remediation Design
  • 2D vs. 3D Capture Zones of Contaminant Plumes
  • Strategic Approach to Cost Effective Remedial Design
  • Bioremediation: Pathways, Stoichiometry, Kinetics, Engineering Design for In-Situ Applications, Limitations and Natural Attenuation
  • ISCO (in situ chemical oxidation) and ISCR (in situ chemical reduction) case histories
  • CSIA (Compound Specific Isotope Analysis) theory and applications
  • Remediation and Control Using “Water As A Carrier”: The Proper Use of Pump and Treat Systems
  • Monitored Natural Attenuation: Limitations And Applications In Remediation
  • Remediation Using “Air As A Carrier”: Soil Vapor Extraction Systems (SVE), Vacuum Enhanced Systems, Air Sparging Remediation Designs
  • Remediation of inorganics
  • Ex-Situ Treatment Technologies
  • Principles of Advanced Remediation Systems: Fracturing, Reactive Walls, Waterloo’s Funnel and Gate, Reactive Zones
  • DNAPL Migration in Heterogeneous Deposits, and Fractured Hard Rock
  • Practical Design and Operation of Soil Vapor Extraction and Air Sparging Pilot Studies
  • Permeable Treatment Walls and In Situ Chemical Oxidation
  • Use of Thermal Remediation Technologies (ERH and TCH) for NAPL Removal
  • Remediation Applications: U. S.G.S.’s MODFLOW using Waterloo Hydrogeologic`s  Visual MODFLOW Pro
  • Indoor Air Vapor Intrusion and Petroleum Vapor Intrusion: Concepts, Practices and Mitigation
  • Friday Afternoon is a 5.5 Hour Optional Bonus Mini-Course on Hands-On Computer Modeling in Remediation Engineering (12:00 noon to 5:30    P.M.)
  • Hands-on Computer Simulation Exercises of Exposure Pathways, Capture Zones, Natural Attenuation, Remediation scenarios such as Pump & Treat, Trenches and Capping using: BiIOSCREEN-AT,  and Waterloo Hydrogeologic`s  Visual MODFLOW