4.8 Article

Microbial Sulfate Reduction Enhances Arsenic Mobility Downstream of Zerovalent-Iron-Based Permeable Reactive Barrier

Journal

ENVIRONMENTAL SCIENCE & TECHNOLOGY
Volume 50, Issue 14, Pages 7610-7617

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.est.6b00128

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Funding

  1. Marie Curie Mobility Research and Training Network - AquaTRAIN - European Commission Sixth Framework Programme [MRTN-CT-2006-035420]
  2. Research Division of BRGM [1333251]

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We assessed the potential of zerovalent-iron-(Fe-0) based permeable reactive barrier (PRB) systems for arsenic (As) remediation in the presence or absence of microbial sulfate reduction. We conducted long-term (200 day) flow-through column experiments to investigate the mechanisms of As transformation and mobility in aquifer sediment (in particular, the PRB downstream linkage). Changes in As speciation in the aqueous phase were monitored continuously. Speciation in the solid phase was determined at the end of the experiment using X-ray absorption near-edge structure (XANES) spectroscopy analysis. We identified thio-As species in solution and AsS in solid phase, which suggests that the As-V was reduced to As-III and precipitated as AsS under sulfate-reducing conditions and remained as As-V under abiotic conditions, even with low redox potential and high Fen content (4.5 mM). Our results suggest that the microbial sulfate reduction plays a key role in the mobilization of As from Fe-rich aquifer sediment under anoxic conditions. Furthermore, they illustrate that the upstream-downstream linkage of PRB affects the speciation and mobility of As in downstream aquifer sediment, where up to 47% of total As initially present in the sediment was leached out in the form of mobile thio-As species.

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