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Journal of Hazardous Materials|February 2, 2010
Prediction of uranium and technetium sorption during titration of contaminated acidic groundwaterFan Zhang, Jack C Parker, Scott C Brooks, et al.
The ISME Journal|April 15, 2015
Dominance of sulfur-fueled iron oxide reduction in low-sulfate freshwater sedimentsColleen M Hansel, Chris J Lentini, Yuanzhi Tang, et al.
Applied Microbiology and Biotechnology|September 18, 2007
Influence of bicarbonate, sulfate, and electron donors on biological reduction of uranium and microbial community compositionWensui Luo, Wei-Min Wu, Tingfen Yan, et al.
Environmental Science & Technology|October 24, 2009
Sequestering uranium and technetium through co-precipitation with aluminum in a contaminated acidic environmentWensui Luo, Shelly D Kelly, Kenneth M Kemner, et al.
Journal of Hazardous Materials|May 3, 2011
Modeling uranium transport in acidic contaminated groundwater with base additionFan Zhang, Wensui Luo, Jack C Parker, et al.
Journal of Environmental Quality|October 25, 2008
Decreasing lead bioaccessibility in industrial and firing range soils with phosphate-based amendmentsRebecca A Moseley, Mark O Barnett, Melanie A Stewart, et al.
Environmental Science & Technology|November 27, 2008
Geochemical modeling of reactions and partitioning of trace metals and radionuclides during titration of contaminated acidic sedimentsFan Zhang, Wensui Luo, Jack C Parker, et al.
Journal of Contaminant Hydrology|January 19, 2007
A reaction-based paradigm to model reactive chemical transport in groundwater with general kinetic and equilibrium reactionsFan Zhang, Gour-Tsyh Yeh, Jack C Parker, et al.
Environmental Science & Technology|August 2, 2005
Bioreduction of uranium in a contaminated soil columnBaohua Gu, Wei-Min Wu, Matthew A Ginder-Vogel, et al.
Ground Water|March 25, 2006
A nested-cell approach for in situ remediationJian Luo, Weimin Wu, Michael N Fienen, et al.
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