Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower...

18
Ultra-Trace PCB Sampling

Transcript of Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower...

Page 1: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Ultra-Trace PCB Sampling

Page 2: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Why High Volume Sampling?

• Increased demand for detecting lower concentrations of contaminants in waters and sediments

• Need to integrate water samples both spatially and temporally

• Challenge of collecting solid fraction from water column in analytical volume

• Ability to capture discrete timepoints• Field proven– logistically feasible

Page 3: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Traditional High Volume Systems

Infiltrex – Axys technologies

TOPS – USGS

Page 4: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Key Components of HVS systems

• Precision pump – flow and volume monitoring• Solids separator – Glass fiber filter wound or

flat disk• Dissolved phase filter – XAD resin or

Polyurethane foam

Page 5: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Issues with HVS Systems

• Mechanical solids separation with filters biases dissolved phase extraction and provides inconsistent results

• XAD resin is costly and prone to field and lab contamination

• Pump systems -too large and often unreliable• Centrifuge options – too large for most field projects

Page 6: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Polyurethane foam vs. XAD

• PUF material is field proven in air and water studies

• PUF is significantly less expensive• PUF material has better recoveries in

dynamic spike studies (PAHs, PCBs, Dioxins, Pesticides)

• PUF material is less prone to field and lab contamination

Page 7: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

XAD Resin vs. PUF media

Dioxin compounds

Rec

over

y

Page 8: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Dynamic Field Spiking of PUF media

Dioxin compounds

Rec

over

y

Page 9: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Vortex Efficiency Study

• Experiment was conducted at CAS laboratories in Kelso, WA • Done to evaluate the efficiency of a Krebs vortex separator to

remove suspended sediment. • Particle standards from 0.1 micron to 180 microns were mixed

in 5 gallon carboys and sampled pre and post vortex separator. • 40 sample sets were completed to evaluate efficiency. • A LISST particle analyzer was used to sample the suspended

sediments pre and post vortex separator. • The LISST particle analyzer measures particles using a laser

and presents both concentration and particle size distribution data.

Page 10: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Test Set-up

LISST 100X

HVS System

Solids Sample

Page 11: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Results – Pre Vortex

Page 12: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Results – Post Vortex

Page 13: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Vortex solids separation

Vortex systems provides consistent separation of solids with minimum disturbance to dissolved phase

The vortex cylinder utilizes pressure from the pump and does not require independent propulsion (eg. centrifuge)

Vortex systems are easily field maintained and cleaned.

Page 14: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Vortex Separator Recovery modeled (%)(Krebs Engineers)

Page 15: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Gravity Consulting HVS systemPR-2900

Picture 1 – Gravity PR-2900 System Overview

Vortex Separator Solids chamber Flat Disk Filter (142 mm) Dissolved Phase Trap (PUF)

Page 16: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Projects using Gravity’s HVS system

• Snake River – NPDES studies• Willamette River – CERCLA project• Port of Longview/Lost Angeles – CERCLA

Department of Energy - multiple nuclear sites• Department of Defense – multiple navy facilities• Upper Columbia River –RCRA study• Passaic River – CERCLA Project• Gulf of Mexico MC252 spill - NRDA

Page 17: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Passaic RiverHeavily industrialized segment of river containing PCBs, dioxins, heavy metals, and other hazardous substances from historical and ongoingsources

Page 18: Ultra-Trace PCB Sampling. Why High Volume Sampling? Increased demand for detecting lower concentrations of contaminants in waters and sediments Need to.

Upper Columbia RiverHistoric mining operations associated with heavy metal, PCBs and organic contamination.Study was conducted over 160 miles of river