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Microbially mediated kinetic sulfur isotope fractionation: reactive transport modeling benchmark

机译:微生物介导的动力学硫同位素分级:反应运输建模基准

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Microbially mediated sulfate reduction is a ubiquitous process in many subsurface systems. Isotopic fractionation is characteristic of this anaerobic process, since sulfate-reducing bacteria (SRB) favor the reduction of the lighter sulfate isotopologue ((SO42-)-O-32) over the heavier isotopologue ((SO42-)-O-34). Detection of isotopic shifts has been utilized as a proxy for the onset of sulfate reduction in subsurface systems such as oil reservoirs and aquifers undergoing heavy metal and radionuclide bioremediation. Reactive transport modeling (RTM) of kinetic sulfur isotope fractionation has been applied to field and laboratory studies. We developed a benchmark problem set for the simulation of kinetic sulfur isotope fractionation during microbially mediated sulfate reduction. The benchmark problem set is comprised of three problem levels and is based on a large-scale laboratory column experimental study of organic carbon amended sulfate reduction in soils from a uranium-contaminated aquifer. Pertinent processes impacting sulfur isotopic composition such as microbial sulfate reduction and iron-sulfide reactions are included in the problem set. This benchmark also explores the different mathematical formulations in the representation of kinetic sulfur isotope fractionation as employed in the different RTMs. Participating RTM codes are the following: CrunchTope, TOUGHREACT, PHREEQC, and PHT3D. Across all problem levels, simulation results from all RTMs demonstrate reasonable agreement.
机译:微生物介导的硫酸盐还原是许多地下系统中的普遍存存。同位素分馏是这种厌氧工艺的特征,因为还原细菌(SRB)有利于在较重的同位素上减少较轻的硫酸件同位素((SO 42 - ) - O-32)((SO 42 - ) - O-34)。同位素移位的检测已被用作硫酸盐降低的硫酸盐降低的代理,例如储油和接受重金属和放射性核素生物化的含水层和含水层。动力学硫同位素分馏的反应性运输建模(RTM)已应用于现场和实验室研究。我们开发了一种基准问题,用于在微生物介导的硫酸盐还原期间模拟动力学硫同位素分馏。基准问题集由三个问题水平组成,基于大规模实验室柱实验研究,对来自铀污染的含水层的土壤中的硫酸盐还原的大规模实验室柱实验研究。在问题集中包括影响硫同位素组合物如微生物硫酸盐还原和铁 - 硫化物反应的相关过程。该基准测试还探讨了在不同RTMS中使用的动力学硫同位素分级的表示中的不同数学制剂。参与的RTM代码如下:CrunchTope,努力反应,Phreeqc和pht3d。遍历所有问题级别,所有RTMS的仿真结果都证明了合理的协议。

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