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Laboratory stabilization/solidification of tank sludges: maximizing sludge loading
1Chemical Technology Division, Oak Ridge National Laboratory, P.O. Box 2008, Oak Ridge, TN 37831-6202, USA. spencerd@ornl.gov
Journal of Environmental Management
|March 24, 2004
Summary
This study explored high-load stabilization of radioactive sludges using grout. While hydrogels prevented free water, actual sludge tests revealed lead and silver stabilization issues not seen with surrogates.
Area of Science:
- Environmental Science
- Chemical Engineering
- Waste Management
Background:
- Radioactive mixed-waste sludges accumulated over decades require treatment and disposal.
- Previous studies in this series focused on laboratory stabilization/solidification.
- This research addresses combining and treating sludges from different tank sets.
Purpose of the Study:
- To maximize sludge loading in grout formulations without a strength criterion.
- To evaluate stabilization of actual tank sludges and surrogates.
- To identify challenges in high-load stabilization of radioactive waste.
Main Methods:
- Laboratory testing of grout formulations with surrogate and actual tank sludge samples.
- Investigating hydrogel use to eliminate free water generation.
- Correlating contaminant performance (Cr, Hg, Pb) with grout composition and pH.
Main Results:
- Hydrogels eliminated free water at >90wt% sludge loading, but monolith strength was compromised.
- Surrogate testing indicated chromium and mercury performance depended on slag content, lead on pH.
- Actual sludge tests at high loadings showed unexpected lead and silver stabilization problems.
Conclusions:
- High sludge loading (>90wt%) is achievable with hydrogels, but may impact monolith integrity.
- Surrogate testing provides valuable insights but does not fully predict actual sludge behavior.
- Further research is needed to address lead and silver stabilization challenges in actual radioactive sludges.