HR: 1340h
AN: H13F-1656 [Abstracts]
TI: Field System for Extended Range Continuous Monitoring of Near Surface CO2 Gas from Multiple Locations
AU: Barr, J
EM: jonathan.barr@pnl.gov
AF: Pacific Northwest National Laboratory, 902 Battelle Blvd., Richland, WA 99354, United
States
AU: * Amonette, J
EM: jim.amonette@pnl.gov
AF: Pacific Northwest National Laboratory, 902 Battelle Blvd., Richland, WA 99354, United
States
AB:
A novel system was developed for continuous measurement of near surface carbon dioxide gas concentrations
associated with the monitoring of carbon dioxide capture and storage in geologic formations. In the current
configuration, the battery powered system allows for near surface CO2 gas collection (0-300,000 ppm) from
seven (expandable) independently located steady state chambers. Each chamber has an associated pump and
metering valve attached to a control manifold that either directs the flow to the analyzer (test chamber) or to
exhaust (all others). The uniquely large concentration range in which the system is capable of operating is
achieved by using an auto-control system that senses when the LiCor LI-7000 analyzer is approaching saturation
and then dilutes the incoming sample using a metered flow of nitrogen gas from the reference gas supply. The
dilution is carried out in stages and is capable of increasing or decreasing on the fly to keep the analyzer within
range. By reading in the sample flow rate, the dilution gas flow rate, and the output flow it is possible to calculate
a dilution scalar that acts as a multiplier for the LiCor analyzer concentration, allowing for immediate read and
record of true sampler concentrations. This system was tested and validated during a week of continuous
operation and field use, monitoring the seven chambers 24 hours/day with CO2 concentrations ranging from
background to over 130,000 ppm.
DE: 0452 Instruments and techniques
DE: 0486 Soils/pedology (1865)
DE: 0490 Trace gases
DE: 1694 Instruments and techniques
DE: 1699 General or miscellaneous
SC: Hydrology [H]
MN: 2007 Fall Meeting