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CARBON STORAGE / MONITORING & VERIFICATION

Storage performance needs more than a plume map.

Illinois Basin–Decatur: connecting geological characterization, operational measurements, and monitoring evidence in deep saline CO₂ storage.

PROJECT / RESEARCH ORGANIZATIONMGSC, ADM, and project partners
PERIOD COVERED2011–2014 injection campaign
LOCATIONIllinois, United States

THE QUESTION IN THE FIELD

Project context

The Illinois Basin–Decatur Project (IBDP) connected CO₂ from ADM’s ethanol production to storage in the Mt. Simon Sandstone. The Midwest Geological Sequestration Consortium and its partners used the project to investigate injectivity, storage capacity, and containment beneath the Eau Claire confining formation. [1]

These are related but distinct questions: a formation may accept fluid without every pressure response or migration pathway being equally well constrained. A useful assurance strategy therefore needs geological interpretation and operational evidence together.

999,215metric tonnes of CO₂ injected
2.13–2.15 kmapproximate injection interval depth
2011–2014documented injection period

Historical IBDP figures from NETL’s project profile. This campaign is distinct from the subsequent Illinois Industrial CCS project. [1]

OBSERVATIONS → INTERPRETATION

Technical approach

NETL’s consortium overview describes an integrated program of site characterization, static and dynamic modeling, seismic analysis, and monitoring of air, soil, groundwater, and the deep subsurface. The project linked pre-injection investigation with operational and post-injection observations. [2]

A published reservoir-monitoring study describes time-lapse saturation logging, pressure and temperature measurements at multiple levels, geochemical sampling, vertical seismic profiling (VSP), and microseismic monitoring. These methods sample different aspects of the storage system rather than offering interchangeable measurements. [3]

Monitoring layers described in the project literature [2, 3]
Monitoring layerEvidence considered
Storage intervalPressure, temperature, fluid samples, and saturation observations.
Geophysical responseRepeated seismic observations and passive microseismic records.
Shallow and surface environmentGroundwater, soil, and atmospheric observations referenced to baseline conditions.

WHAT THE EVIDENCE SHOWED

Reported findings

NETL reports that the project met its injection objective and that its monitoring program found no evidence of CO₂ leaving the storage complex. This is a project-specific interpretation of the collected evidence, not a claim that all geological storage sites have equivalent behavior. [1]

The consortium also documents how experience at IBDP informed later commercial-scale work at the Decatur site, including monitoring choices. That progression illustrates the value of retaining a usable technical record across project phases. [2]

CONNECTING THE LESSONS

Technical perspective

Our technical perspective: assurance is an evidence-integration problem. A visually plausible plume forecast should be evaluated alongside pressure behavior, geological alternatives, and the observations that could challenge the model.

  • Keep pressure and plume predictions distinct. They describe different responses and can motivate different monitoring questions.
  • Design monitoring against uncertainty. Choose measurements that help resolve competing interpretations rather than collecting every available signal without a decision purpose.
  • Make reconciliation explicit. Document how new observations alter parameter estimates, scenario confidence, or the need for additional review.

Decision focus: can the monitoring design detect a meaningful departure from the expected storage-system behavior, and is the interpretation process defined in advance?

APPLY THE RIGHT QUESTIONS

Scoping a related project

A storage-modeling engagement can be scoped around geological realizations, multiphase flow scenarios, pressure uncertainty, and a monitoring rationale. The deliverable should connect each recommendation to its assumptions and evidence requirements. Permitting obligations require a separate, jurisdiction-specific assessment.

Discuss your technical requirements

PRIMARY SOURCES

Evidence & further reading

  1. [1] NETL — Illinois Basin–Decatur Project profile ↗Primary project facts and historical injection record
  2. [2] NETL — Midwest Geological Sequestration Consortium overview ↗Project methods and technology-transfer context
  3. [3] Integrated reservoir monitoring at the Illinois Basin–Decatur Project ↗Research publication record · University of Illinois

Industry project analysis by envitrace. Project facts are attributed to the organizations and publications above; the technical perspective is our interpretation. Period-specific observations are not presented as current project status.

CONTINUE EXPLORING

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