Mineral Precipitation Upgradient from a Zero-Valent Iron Permeable Reactive Barrier

Author:

Johnson R.L.,Thoms R.B.,O’Brien Johnson R.,Nurmi J.T.,Tratnyek P.G.

Publisher

Wiley

Subject

Water Science and Technology,Civil and Structural Engineering

Reference29 articles.

1. Analysis of acid-volatile sulfide (AVS) and simultaneous extracted metals (SEM) for the estimation of potential toxicity in aquatic sediments;Allen;Environmental Toxicology Chemistry,1993

2. Blowes, D.W. , R.W. Puls , R.W. Gillham , C.J. Ptacek , T.A. Bennett , J.G. Bain , C.J. Hanton-Fong , and C.J. Paul . 1999. An in-situ permeable reactive barrier for the treatment of hexavalent chromium and trichloroethylene in ground water. Volume 2: Performance monitoring. EPA/600/R-99/095b. Washington, DC: U.S. EPA.

3. Clement, T.P. 1997. RT3D a modular computer code for simulating reactive multi-species transport in 3-dimensions. PNNL-SA-11720. Richland, Washington: Pacific Northwest National Laboratory.

4. Columbia Analytical Services Inc. 2004. Standard operating procedure: total sulfur for ion chromatography, SOP GEN-ICS. Kelso, Washington: Columbia Analytical Services.

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