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Irving A Breger grad student 1963 Harvard
 (The copper deposits of Ruby Creek, Cosmos Hills, Alaska.)
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Hannula SR, Esposito KJ, Chermak JA, et al. (2003) Estimating ground water discharge by hydrograph separation. Ground Water. 41: 368-75
Eary LE, Runnells DD, Esposito KJ. (2003) Geochemical controls on ground water composition at the Cripple Creek Mining District, Cripple Creek, Colorado Applied Geochemistry. 18: 1-24
Keith DC, Runnells DD, Esposito KJ, et al. (2001) Geochemical models of the impact of acidic groundwater and evaporative sulfate salts on Boulder Creek at Iron Mountain, California Applied Geochemistry. 16: 947-961
Patterson CG, Runnells DD. (1996) A Field Test of Electromigration as a Method for Remediating Sulfate from Shallow Ground Water Ground Water Monitoring and Remediation. 16: 63-68
Doyle TA, Davis A, Runnells DD. (1994) Predicting the environmental stability of treated copper smelter flue dust Applied Geochemistry. 9: 337-350
Runnells DD, Wahli C. (1993) In Situ Electromigration as a Method for Removing Sulfate, Metals, and Other Contaminants from Ground Water Ground Water Monitoring and Remediation. 13: 121-129
Barber LB, Thurman E, Runnells DD. (1992) Geochemical heterogeneity in a sand and gravel aquifer: Effect of sediment mineralogy and particle size on the sorption of chlorobenzenes Journal of Contaminant Hydrology. 9: 35-54
Runnells DD, Lindberg RD. (1990) Selenium in aqueous solutions: The impossibility of obtaining a meaningful Eh using a platinum electrode, with implications for modeling of natural waters Geology. 18: 212-215
Rampe JJ, Runnells DD. (1989) Contamination of water and sediment in a desert stream by metals from an abandoned gold mine and mill, Eureka District, Arizona, U.S.A. Applied Geochemistry. 4: 445-454
Davis A, Runnells DD. (1987) Geochemical interactions between acidic tailings fluid and bedrock: use of the computer model MINTEQ Applied Geochemistry. 2: 231-241
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