Advanced groundwater remediation: Active and passive technologies
Edited by
Franz-Georg Simon;
Franz-Georg Simon
Federal Institute for Materials Research and Testing (BAM), Berlin, Germany
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Tamás Meggyes;
Tamás Meggyes
Federal Institute for Materials Research and Testing (BAM), Berlin, Germany
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Chris McDonald
Chris McDonald
School of Civil Engineering, University of Leeds, Leeds, UK
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Emerald Publishing Limited
ISBN print:
978-0-7277-3645-1
Publication date:
2002
Book Chapter
13. Flooding strategies for decommissioning of uranium mines – a systems approach
By
Rimbert Gatzweiler;
Rimbert Gatzweiler
Wismut GmbH, Jagdschänkenstrasse 29, D-09117 Chemnitz, Germany
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Alex Jakubick;
Alex Jakubick
Wismut GmbH, Jagdschänkenstrasse 29, D-09117 Chemnitz, Germany
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Gunther Kiessig;
Gunther Kiessig
Wismut GmbH, Jagdschänkenstrasse 29, D-09117 Chemnitz, Germany
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Michael Paul;
Michael Paul
Wismut GmbH, Jagdschänkenstrasse 29, D-09117 Chemnitz, Germany
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Jochen Schreyer
Jochen Schreyer
Wismut GmbH, Jagdschänkenstrasse 29, D-09117 Chemnitz, Germany
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Rimbert Gatzweiler,
Alex Jakubick,
Gunther Kiessig,
Michael Paul,
Jochen Schreyer
Wismut GmbH, Jagdschänkenstrasse 29, D-09117 Chemnitz, Germany
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Published:2002
Citation
Rimbert Gatzweiler, Alex Jakubick, Gunther Kiessig, Michael Paul, Jochen Schreyer, 2002. "13. Flooding strategies for decommissioning of uranium mines – a systems approach", Advanced groundwater remediation: Active and passive technologies, Franz-Georg Simon, Tamás Meggyes, Chris McDonald
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13.1. Introduction
13.2. Mine remediation and flooding
13.3. Pump and treat versus collect and treat
13.4. Flooding strategies at Wismut mines
13.5. Summary and conclusions
13.6. References
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