LONG-TERM PERFORMANCE OF PERMEABLE REACTIVE BARRIERS: LESSONS LEARNED ON DESIGN, CONTAMINANT TREATMENT, LONGEVITY, PERFORMANCE MONITORING AND COST - AN OVERVIEW

Author:

Puls Robert W.

Publisher

Springer Netherlands

Reference6 articles.

1. Blowes, D. W., Mayer, K. U., 1999, An In-Situ Permeable Reactive Barrier for the Treatment of Hexavalent Chromium and Trichloroethylene in Ground Water: Volume 3 Multicomponent Reactive Transport Modeling. United States Environmental Protection Agency, Cincinnati, OH, Report EPA/600/R-99/095c.

2. Powell, R. M., Powell, P. D., Puls, R. W., 2002, Economic Analysis of the Implementation of Permeable Reactive Barriers for Remediation of Contaminated Ground Water. EPA/600/R-02/034.

3. Puls, R. W., Blowes, D. W., Gillham, R. W., 1999, Long-term performance monitoring for permeable reactive barrier at the USCG Support Center, Elizabeth City, North Carolina, J. Hazard. Mater. 68:109–124.

4. Su, C., Puls, R. W., 2004, Significance of iron (II,III) hydroxycarbonate green rust in arsenic remediation using zerovalent iron in laboratory column tests, Environ. Sci. Technol. 38:5224–5231.

5. Wilkin, R. T., Puls, R. W., 2003, Capstone Report on the Application, Monitoring, and Performance of Permeable Reactive Barriers for Ground-Water Remediation. Volume 1: Performance Evaluations at Two Sites, EPA/600/R-03/045a.

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