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Journal of Environmental Radioactivity|May 13, 2014
Influence of alkaline co-contaminants on technetium mobility in vadose zone sedimentsJim E Szecsody, Danielle P Jansik, James P McKinley, et al.Environmental Science & Technology|October 6, 2004
In situ chemical reduction of aquifer sediments: enhancement of reactive iron phases and TCE dechlorinationJim E Szecsody, Jonathan S Fruchter, Mark D Williams, et al.Environmental Science & Technology|June 30, 2005
Influence of sediment bioreduction and reoxidation on uranium sorptionChongxuan Liu, John M Zachara, Lirong Zhong, et al.The Science of the Total Environment|May 4, 2019
Persistence of chromate in vadose zone and aquifer sediments in Hanford, WashingtonJim E Szecsody, Mike J Truex, Nikolla P Qafoku, et al.Journal of Contaminant Hydrology|July 16, 2013
Influence of acidic and alkaline waste solution properties on uranium migration in subsurface sedimentsJim E Szecsody, Mike J Truex, Nikolla P Qafoku, et al.Chemosphere|March 16, 2010
Abiotic transformation of high explosives by freshly precipitated iron minerals in aqueous FeII solutionsHardiljeet K Boparai, Steve D Comfort, Tunlawit Satapanajaru, et al.Journal of Environmental Radioactivity|February 18, 2020
In situ reductive dissolution to remove Iodine-129 from aquifer sedimentsJim E Szecsody, Hilary P Emerson, Carolyn I Pearce, et al.The Science of the Total Environment|January 27, 2020
Iodine immobilization by materials through sorption and redox-driven processes: A literature reviewRobert C Moore, Carolyn I Pearce, Joseph W Morad, et al.The Science of the Total Environment|February 15, 2020
Technetium immobilization by materials through sorption and redox-driven processes: A literature reviewCarolyn I Pearce, Robert C Moore, Joseph W Morad, et al.ACS Applied Materials & Interfaces|May 19, 2020
Hybrid Sorbents for <sup>129</sup>I Capture from Contaminated GroundwaterElsa A Cordova, Vanessa Garayburu-Caruso, Carolyn I Pearce, et al.Pageof 2