Shiel, AE, Johnson, TM
We conducted a detailed investigation of U isotopes in conjunction with a broad geochemical investigation during field-scale biostimulation and desorption experiments. This investigation was carried out in the uranium-contaminated alluvial aquifer of the Rifle field research site. In this well-characterized setting, a more comprehensive understanding of U isotope geochemistry is possible. Our results indicate that U isotope fractionation is consistently observed across multiple experiments at the Rifle site. Microbially-mediated reduction is suggested to account for most or all of the observed fractionation as abiotic reduction has been demonstrated to impart much smaller, often near-zero, isotopic fractionation or isotopic fractionation in the opposite direction. Data from some time intervals are consistent with a simple model for transport and U(VI) reduction, where the fractionation factor (ε = +0.65‰ to +0.85‰) is consistent with experimental studies. However, during other time intervals the observed patterns in our data indicate the importance of other processes in governing U concentrations and 238U/235U ratios. For instance, we demonstrate that departures from Rayleigh behavior in groundwater systems arise from the presence of adsorbed species. We also show that isotope data are sensitive to the onset of oxidation after biostimulation ends, even in the case where reduction continues to remove contaminant uranium downstream. Our study and the described conceptual model support the use of 238U/235U ratios as a tool for evaluating the efficacy of biostimulation and potentially other remediation strategies.
@article{b10a84e9-4a38-4d0b-aa03-706d02a4e4f8,
title={Reactive transport of uranium in a groundwater bioreduction study: Insights from high-temporal resolution 238U/235U data},
author={Shiel and AE and Johnson and TM},
year={2016},
language={en}
}TY - JOUR TI - Reactive transport of uranium in a groundwater bioreduction study: Insights from high-temporal resolution 238U/235U data AU - Shiel AU - AE AU - Johnson AU - TM PY - 2016 LA - en ER -
Sadia Ilyas, Jae-chun Lee
The feasibility of biometallurgical processing for recovering heavy metals, precious metals, and rare earth elements from waste electrical and electro
Željko Kamberović, Marija Korać
Demand for nickel is constantly growing due to the versatility of its application, at the first place for stainless steel production. Ore reserves and
O. O. Odikamnoro, B.O.Okeaguale, U. R. O. Eyankware
Water is a natural resource that covers about 70% of the earth surface, yet humans lack potable water for both domestic use and drinking. The study ar
Jennifer Namias, Dr. Nickolas J. Themelis
This study explores the future of electronic waste recycling in the United States, addressing the challenges and proposing domestic solutions. The rap
Deepak Malhotra
This work discusses the essential components of a rigorous auditing process aimed at enhancing metallurgical plant performance. The objective is to id
Walaa A. Kassab
In this paper, leaching characteristics are presented, and a cost-effective process for extracting uranium, copper, and cadmium from Talet Seleim’s Gi