Page 350 - Environmental Nanotechnology Applications and Impacts of Nanomaterials
P. 350

Nanomaterials for Groundwater Remediation  335

        McCurrie, R., A. (1994). Ferromagnetic Materials: Structure and Properties, Academic
          Press, London.
        Mondal, K., Jegadeesan, G., and Lalvani, S. B. (2004). “Removal of Selenate by Fe and
          NiFe Nanosized Particles.”  Industrial & Engineering Chemistry Research, 43,
          4922–4934.
        Moore, A. M., De Leon, C. H., and Young, T. M. (2003). “Rate and Extent of Aqueous
          Perchlorate Removal by Iron Surfaces.” Environmental Science & Technology, 37(14),
          3189–3198.
        Nakamae, K., Tanigawa, S., Nakano, S., and Sumiya, K. (1989). “The Effect of Molecular
          Weight and Hydrophilic Groups on the Adsorption Behavior of Polymers onto Magnetic
          Particles.” Colloids and Surfaces A, 37, 379.
        Neto, C. B., Bonini, M., and Baglioni, P. (2005). “Self-Assembly of Magnetic Nanoparticles
          into Complex Superstructures: Spokes and Spirals.” Colloids and Surfaces  A., 269,
          96–100.
        Nurmi, J. T., Tratnyek, P. G., Sarathy, V., Baer, D. R., Amonette, J. E., Pecher, K., Wang,
          C., Linehan, J. C., Matson, D. W., Penn, R. L., and Driessen, M. D. (2005).
          “Characterization and Properties of Metallic Iron Nanoparticles: Spectroscopy,
          Electrochemistry, and Kinetics.” Environmental Science & Technology, 39(5), 1221–1230.
        Nutt, M. O., Hughes, J. B., and Wong, M. S. (2005). “Designing Pd-on-Au Bimetallic
          Nanoparticle Catalysts for Trichloroethene Hydrodechlorination.”  Environmental
          Science & Technology, 39(5), 1346–1353.
        Oh, B. T., and Alvarez, P. J. J. (2002). “Hexahydro-1,3,5-Trinitro-1,3,5-Triazine (RDX)
          Degradation in Biologically Active Iron Columns.”  Water Air and Soil Pollution,
          141(1–4), 325–335.
        Phillips, D. H., Gu, B., Watson, D. B., Roh, Y., Liang, L., and Lee, S. Y. (2000). “Performance
          Evaluation of a Zerovalent Iron Reactive Barrier: Mineralogical Characteristics.”
          Environmental Science & Technology, 34(19), 4169–4176.
        Plaza, R. C., de Vicente, J. Gómez-Lopera, S., and Delgado, A. V. (2001). “Stability of
          Dispersions of Colloidal Nickel Ferrite Spheres.” Journal of Colloid Interface Science, 242,
          306–313.
        Ponder, S., Darab, J., and Mallouk, T. (2000). “Remediation of Cr(IV) and Pb(II) Aqueous
          Solutions Using Supported Nanoscale Zero-valent Iron.” Environmental Science &
          Technology, 34(12), 2564–2569.
        Pourbaix, M. J. N. (1966). Atlas of Electrochemical Equilibria in Aqueous Solutions,
          Pergamon Press, New York.
        Quinn, J., Geiger, C., Clausen, C., Brooks, K., Coon, C., O’Hara, S., Krug, T., Major, D.,
          Yoon, W.-S., Gavaskar, A., and Holdsworth, T. (2005). “Field Demonstration of DNAPL
          Dehalogenation Using Emulsified Zero-Valent Iron.”  Environmental Science &
          Technology, 39(5), 1309–1318.
        Roddick-Lanzilotta, A., and McQuillan, J. (1999). “An in Situ Infrared Spectroscopic
          Investigation of Lysine Peptide and Polylysine Adsorption to TiO2 from Aqueous
          Solutions.” Journal of Colloid Interface Science, 217, 194–202.
        Rose, J., Auffan, M., Thill, A., Decome, L., Masion, A., Orsiere, T., Botta, A., and Bottero, J.-
          Y. “Nanoparticles as Adsorbents (for Liquid Waste and Water Treatment).” Franco-
          American Conference on Nanotechnologies for a Sustainable Environment, Rice University.
        Rosensweig, R. E. (1985). Ferrohydrodynamics, Cambridge University Press, New York.
        Royal Academy of Engineering, T. R. S. (2004). “Nanoscience and Nanotechnologies:
          Opportunities and Uncertainties.” Royal Academy of Engineering, London.
        Ryan, J., and Elimelech, M. (1996). “Colloid Mobilization and Transport in Groundwater.”
          Colloids and Surfaces, 107, 1–56.
        Saleh, N., Phenrat, T., Sirk, K., Dufour, B., Ok, J., Sarbu, T., Matyjaszewski, K., Tilton,
          R. D., and Lowry, G. V. (2005a). “Adsorbed Triblock Copolymers Deliver Reactive Iron
          Nanoparticles to the Oil/Water Interface.” Nano Letters, 5(12), 2489–2494.
        Saleh, N., Sarbu, T., Sirk, K., Lowry, G. V., Matyjaszewski, K., and Tilton, R. D. (2005b).
          “Oil-in-Water Emulsions Stabilized by Highly Charged Polyelectrolyte-Grafted Silica
          Nanoparticles.” Langmuir, 21(22), 9873–9878.
        Saleh, N., Sirk, K., Phenrat, T., Dufour, B., Matyjaszewski, K., Tilton, R. D., and Lowry,
          G. V. (2007). “Surface Modifications Enhance Nanoiron Transport and NAPL Targeting
          in Saturated Porous Media.” Environmental Engineering Science, 24 (1) 45–57.
   345   346   347   348   349   350   351   352   353   354   355