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2013 | 1 | 1-2
Tytuł artykułu

Nanomaterials and the Environment: Global impact of tiny materials

Treść / Zawartość
Warianty tytułu
Języki publikacji
EN
Abstrakty
Słowa kluczowe
Wydawca

Rocznik
Tom
1
Strony
1-2
Opis fizyczny
Daty
online
2013-01-03
Twórcy
  • Nanoscience & Nanotechnology Group,
    School of Pharmacy & Biomolecular Sciences, University of Brighton,
    Lewes Road, Brighton, BN2 4GJ, United Kingdom, r.whitby@brighton.ac.uk
  • Nanoscience & Nanotechnology Group,
    School of Pharmacy & Biomolecular Sciences, University of Brighton,
    Lewes Road, Brighton, BN2 4GJ, United Kingdom
Bibliografia
  • Klaine, S. J.; Alvarez, P. J. J.; Batley, G. E.; Fernandes, T. F.;Handy, R. D.; Lyon, D. Y.; Mahendra, S.; McLaughlin, M. J.;Lead, J. R., Nanomaterials in the environment: Behavior, fate,bioavailability, and effects. Environmental Toxicology andChemistry 2008, 27, 1825-1851.[WoS]
  • Pradeep, T.; Anshup, Noble metal nanoparticles for waterpurification: A critical review. Thin Solid Films 2009, 517,6441-6478.[WoS]
  • Katok, K. V.; Whitby, R. L. D.; Fukuda, T.; Maekawa, T.;Bezverkhyy, I.; Mikhalovsky, S. V.; Cundy, A. B.,Hyperstoichiometric interaction between silver and mercuryat the nanoscale. Angewandte Chemie (International ed. inEnglish) 2012, 51, 2632-5.
  • Cundy, A. B.; Hopkinson, L.; Whitby, R. L. D., Use of ironbasedtechnologies in contaminated land and groundwaterremediation: A review. Science of the Total Environment2008, 400, 42-51.[WoS]
  • Karn, B.; Kuiken, T.; Otto, M., Nanotechnology and in SituRemediation: A Review of the Benefits and Potential Risks.Environmental Health Perspectives 2009, 117, 1823-1831.[WoS]
  • Kwon, S.; Fan, M.; Cooper, A. T.; Yang, H., Photocatalyticapplications of micro- and Nano-TiO2 in environmentalengineering. Critical Reviews in Environmental Science andTechnology 2008, 38, 197-226.[WoS]
  • Slowing, I. I.; Vivero-Escoto, J. L.; Wu, C.-W.; Lin, V. S. Y.,Mesoporous silica nanoparticles as controlled release drugdelivery and gene transfection carriers. Advanced DrugDelivery Reviews 2008, 60, 1278-1288.[WoS]
  • MaHam, A.; Tang, Z.; Wu, H.; Wang, J.; Lin, Y., Protein-Based Nanomedicine Platforms for Drug Delivery. Small2009, 5, 1706-1721.[WoS]
  • Lu, C.; Bai, H.; Wu, B.; Su, F.; Fen-Hwang, J., Comparativestudy of CO2 capture by carbon nanotubes, activatedcarbons, and zeolites. Energy & Fuels 2008, 22, 3050-3056.[WoS]
  • Su, F.; Lu, C.; Cnen, W.; Bai, H.; Hwang, J. F., Captureof CO2 from flue gas via multiwalled carbon nanotubes.Science of the Total Environment 2009, 407, 3017-3023.[WoS]
  • Abughusa, A.; Amaratunga, L.; Mercier, L., The recovery ofrhodium ions at ultra-low concentrations using nanostructuredadsorbents. In Nanoporous Materials Iv, Sayari, A.; Jaroniec,M., Eds. 2005; Vol. 156, pp 957-962.
  • Abughusa, A.; Amaratunga, L.; Mercier, L., Extraction ofprecious metal ions from simulated mine effluents using ananostructured adsorbent. Canadian Metallurgical Quarterly2006, 45, 237-241.
  • Li, X.; Song, Q.; Liu, B.; Liu, C.; Wang, H.; Geng, J.; Chen, Z.;Liu, N.; Li, S., Adsorption of Uranium by Carbon Materialsfrom Aqueous Solutions. Progress in Chemistry 2011, 23,1446-1453.
  • Guo, F.; Silverberg, G.; Bowers, S.; Kim, S.-P.; Datta, D.;Shenoy, V.; Hurt, R. H., Graphene-Based EnvironmentalBarriers. Environmental Science & Technology 2012, 46,7717-7724.[WoS]
  • Zhang, L.; Fang, M., Nanomaterials in pollution tracedetection and environmental improvement. Nano Today2010, 5, 128-142.[WoS]
  • Turker, A. R., New sorbents for solid-phase extraction formetal enrichment. Clean-Soil Air Water 2007, 35, 548-557.[WoS]
  • Mauter, M. S.; Elimelech, M., Environmental applicationsof carbon-based nanomaterials. Environmental Science &Technology 2008, 42, 5843-5859.
  • Waggoner, P. S.; Craighead, H. G., Micro- andnanomechanical sensors for environmental, chemical, andbiological detection. Lab on a Chip 2007, 7, 1238-1255.[WoS]
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.-psjd-doi-10_2478_nanome-2012-0001
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