has been cited by the following article(s):
[1]
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Degradation of TCE, PCE, and 1, 2–DCE DNAPLs in contaminated groundwater using polyethylenimine-modified zero-valent iron nanoparticles
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Journal of Cleaner Production,
2018 |
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[2]
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A review of permeable reactive barrier as passive sustainable technology for groundwater remediation
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International Journal of Environmental Science and Technology,
2017 |
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[3]
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GROUNDWATER WATER REMEDIATION BY STATIC DIFFUSION USING NANO-ZERO VALENT METALS (Fe0
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2014 |
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[4]
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Capture and storage of hydrogen gas by zero-valent iron
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Journal of contaminant hydrology,
2014 |
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[5]
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Groundwater Water Remediation by Static Diffusion Using Nano‐Zero Valent Metals (Fe0, Cu0, Al0), n‐FeHn+, n‐Fe (OH) x, n‐FeOOH, n‐Fe‐[OxHy](n+/−)
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Nanomaterials for Environmental Protection,
2014 |
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[6]
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Metallic iron for water treatment: A critical review
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CLEAN–Soil, Air, Water,
2013 |
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[7]
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Metallic iron for environmental remediation: the long walk to evidence
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Corrosion Reviews,
2013 |
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[1]
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A review of permeable reactive barrier as passive sustainable technology for groundwater remediation
International Journal of Environmental Science and Technology,
2017
DOI:10.1007/s13762-017-1466-0
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[2]
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Capture and storage of hydrogen gas by zero-valent iron
Journal of Contaminant Hydrology,
2014
DOI:10.1016/j.jconhyd.2013.11.007
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[3]
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Nanomaterials for Environmental Protection
2014
DOI:10.1002/9781118845530.ch1
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[4]
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Metallic Iron for Water Treatment: A Critical Review
CLEAN – Soil, Air, Water,
2013
DOI:10.1002/clen.201200502
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[5]
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Metallic Iron for Water Treatment: A Critical Review
CLEAN - Soil, Air, Water,
2013
DOI:10.1002/clen.201200502
|
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