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Environmental Sciences

D-Index
49
Citations
7316
World Ranking
5348
National Ranking
189

Overview

Ian Snape is affiliated with Frontline Mind in Australia and works primarily within the field of Engineering, with a specific focus on Ocean Engineering. Their research intersects topics in Marine Biology and Environmental Chemistry.

The scientist's recent publication record includes the following paper:

  • Infaunal recruitment, lubricant oil degradation and bioturbation in Antarctic marine sediments (2023), published in eCite Digital Repository (University of Tasmania)

Snape has collaborated with several coauthors throughout their research. Frequent collaborators include:

  • Baw Thompson
  • Noel W. Davies
  • MJ Riddle
  • Jonathan S. Stark

The publication venue associated with Snape's work is the eCite Digital Repository (University of Tasmania), reflecting at least one contribution to this platform.

The main research fields and subfields where Snape contributes are:

  • Main field: Engineering
  • Subfield: Ocean Engineering

The research topics frequently addressed include:

  • Marine Biology and Environmental Chemistry

Best Publications

  • Impacts of local human activities on the Antarctic environment.

    T. Tin;Z.L. Fleming;Kevin A. Hughes;D.G. Ainley

  • Atmospheric trace gases support primary production in Antarctic desert surface soil

    Mukan Ji;Chris Greening;Inka Vanwonterghem;Carlo R. Carere

  • Soil fertility is associated with fungal and bacterial richness, whereas pH is associated with community composition in polar soil microbial communities

    Steven D. Siciliano;Anne S. Palmer;Tristrom Winsley;Tristrom Winsley;Eric Lamb

  • Management and remediation of contaminated sites at Casey Station, Antarctica

    Ian Snape;Martin J. Riddle;Jonathan S. Stark;Coleen M. Cole

  • Introducing BASE: the Biomes of Australian Soil Environments soil microbial diversity database

    Andrew Bissett;Anna Fitzgerald;Thys Meintjes;Pauline M. Mele

  • Characterisation of the dilute HCl extraction method for the identification of metal contamination in Antarctic marine sediments.

    I. Snape;R.C. Scouller;S.C. Stark;J. Stark

  • Nitrogen requirements for maximizing petroleum bioremediation in a sub-Antarctic soil

    James Walworth;Andrew Pond;Ian Snape;John Rayner

  • Community fingerprinting in a sequencing world

    Josie van Dorst;Andrew Bissett;Anne S. Palmer;Mark Brown

  • Using real-time PCR to assess changes in the hydrocarbon-degrading microbial community in Antarctic soil during bioremediation.

    Shane M. Powell;Shane M. Powell;Susan H. Ferguson;John P. Bowman;Ian Snape

  • Microbial community variation in pristine and polluted nearshore Antarctic sediments.

    Shane M Powell;John P Bowman;Ian Snape;Jonathan S Stark

  • Fate and transport of petroleum hydrocarbons in engineered biopiles in polar regions

    M. J. Whelan;F. Coulon;G. Hince;J. Rayner

  • The effects of nitrogen and water on mineralisation of hydrocarbons in diesel-contaminated terrestrial Antarctic soils

    Susan H Ferguson;Susan H Ferguson;Peter D Franzmann;Andrew T Revill;Ian Snape

  • Bioremediation of Petroleum Hydrocarbons in Cold Regions

    Dennis M. Filler;Ian Snape;David L. Barnes

  • Highly branched isoprenoids as proxies for variable sea ice conditions in the Southern Ocean

    Guillaume Massé;Simon T. Belt;Xavier Crosta;Sabine Schmidt

  • Petroleum–hydrocarbon contamination and remediation by microbioventing at sub-Antarctic Macquarie Island

    John L. Rayner;Ian Snape;James L. Walworth;Paul Mc A. Harvey

  • Human impacts in Antartic marine soft-sediment assemblages: correlations between multivariate biological patterns and environmental variables at Casey Station

    Jonathan S Stark;Martin J Riddle;Ian Snape;Rebecca C Scouller

  • Investigation of evaporation and biodegradation of fuel spills in Antarctica: II-extent of natural attenuation at Casey Station.

    Ian Snape;Susan H. Ferguson;Paul McA. Harvey;Martin J. Riddle

  • The Ny Friesland Orogen, Spitsbergen

    Unknown

  • The effects of petroleum hydrocarbon and heavy metal contamination of marine sediments on recruitment of Antarctic soft-sediment assemblages: a field experimental investigation

    Jonathan S Stark;Ian Snape;Martin J Riddle

  • The evolution of a layered metaigneous complex in the Rauer Group, East Antarctica: evidence for a distinct Archaean terrane

    Simon Harley;I. Snape;L. P. Black

  • A field trial of in situ chemical oxidation to remediate long-term diesel contaminated Antarctic soil

    Susan H. Ferguson;Susan H. Ferguson;Andrei Z. Woinarski;Andrei Z. Woinarski;Ian Snape;Carl E. Morris

  • The effects of cold temperature on copper ion exchange by natural zeolite for use in a permeable reactive barrier in Antarctica

    A.Z Woinarski;A.Z Woinarski;I Snape;G.W Stevens;S.C Stark

Frequent Co-Authors

Martin J. Riddle
Martin J. Riddle Australian Antarctic Division
Jonathan S. Stark
Jonathan S. Stark Australian Antarctic Division
Geoff W. Stevens
Geoff W. Stevens University of Melbourne
Steven D. Siciliano
Steven D. Siciliano University of Saskatchewan
Geoffrey W. Stevens
Geoffrey W. Stevens University of Melbourne
John P. Bowman
John P. Bowman University of Tasmania
Simon C. George
Simon C. George Macquarie University
Peter J. Scales
Peter J. Scales University of Melbourne
Mark V. Brown
Mark V. Brown University of Technology Sydney
Stephen K. Gray
Stephen K. Gray Victoria University

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