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Ground Water|April 12, 2005
Approximate solution for solute transport during spherical-flow push-pull testsMartin H Schroth, Jonathan D IstokGround Water|March 25, 2006
Models to determine first-order rate coefficients from single-well push-pull testsMartin H Schroth, Jonathan D IstokChemosphere|March 4, 2008
Single-well, gas-sparging tests for evaluating the in situ aerobic cometabolism of cis-1,2-dichloroethene and trichloroetheneYoung Kim, Jonathan D Istok, Lewis SempriniGround Water|May 27, 2004
Push-pull tests for assessing in situ aerobic cometabolismYoung Kim, Jonathan D Istok, Lewis SempriniJournal of Contaminant Hydrology|November 22, 2005
Push-pull tests evaluating in situ aerobic cometabolism of ethylene, propylene, and cis-1,2-dichloroethyleneYoung Kim, Jonathan D Istok, Lewis SempriniJournal of Contaminant Hydrology|November 15, 2006
Evaluation of the in-situ aerobic cometabolism of chlorinated ethenes by toluene-utilizing microorganisms using push-pull testsMohammad F Azizian, Jonathan D Istok, Lewis SempriniMicrobial Ecology|May 9, 2006
Changes in organic matter biodegradability influencing sulfate reduction in an aquifer contaminated by landfill leachateSteve H Harris, Jonathan D Istok, Joseph M SuflitaEnvironmental Science & Technology|September 12, 2003
"Forced mass balance" technique for estimating in situ transformation rates of sorbing solutes in groundwaterKimberly J Hageman, Jennifer A Field, Jonathan D Istok, et al.Journal of Contaminant Hydrology|December 22, 2004
Quantifying the effects of fumarate on in situ reductive dechlorination ratesKimberly J Hageman, Jennifer A Field, Jonathan D Istok, et al.Environmental Science & Technology|May 10, 2002
In-situ evidence for uranium immobilization and remobilizationJohn M Senko, Jonathan D Istok, Joseph M Suflita, et al.Pageof 3