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Advances in engineered remediation for use in the Arctic and Antarctica

Bibliographic Data

ID9224683
AuthorsDennis M Filler (University of Alaska Fairbanks), C M Reynolds (0000-0002-2653-5287, Cold Regions Research and Engineering Laboratory), Ian Snape (Australian Antarctic Division), A J Daugulis (Queen's University), David L Barnes (0000-0003-1479-6882, University of Alaska Fairbanks), Peter J Williams (University of Cambridge)
Year2006
Volume42
Issue2
Pages111-120
Publication date2006-04-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenuePolar Record (JOURNAL)
Journal identifiersISSN: 0032-2474 • E-ISSN: 1475-3057
PublisherCambridge University Press (CUP) (PUBLISHER)
DOI10.1017/s003224740500505x
OpenAlexW2035060498
LanguageEN

Creative remediation schemes have been implemented with success at petroleum-contaminated sites in Alaska and Canada during the past decade. Contaminated media have been landfarmed, amended with fertilizers, augmented with microbial products, and manipulated with engineered systems. Phytoremediation developments and use of biodegradable synthetic and polymeric resins for potential use with petroleum and xenobiotic contaminants are on the horizon. Treatment of supra-permafrost water and melt-water runoff with permeable reactive barriers and partitioning bioreactors is now possible. Cost and time limitations will likely continue to drive remediation decisions in the Arctic. Environmental policy, environmental constraints, and cost will dictate what technologies are appropriate for Antarctic clean-up, although the pressure of time is less acute because land transfer and liability are not drivers. This paper discusses some recent advances in remediation engineering for use in polar regions. Conceptual models are presented, and case study treatment costs and durations are highlighted to aid environmental decision-making

Arctic · Biochemical engineering · Contamination · Environmental hazard · Environmental planning · Environmental remediation · Environmental resource management · Waste management · Atmospheric and Environmental Gas Dynamics · Climate change and permafrost · Ecology · Engineering · Environmental Science · Microbial bioremediation and biosurfactants

Citation velocityhistorical
Highly citedNo
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