Page 308 - Environmental Nanotechnology Applications and Impacts of Nanomaterials
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Nanoparticle Transport, Aggregation, and Deposition  293

         86. Franchi, A., and C.R. O’Melia, Effects of natural organic matter and solution chem-
            istry on the deposition and reentrainment of colloids in porous media. Environmental
            Science & Technology, 2003. 37: p. 1122–1129.
         87. Johnson, S.B., et al., Adsorption of organic matter at mineral/water interfaces. 6.
            effect of inner-sphere versus outer-sphere adsorption on colloid stability. Langmuir,
            2005. 21(14): p. 6356–6365.
         88. Illes, E., and E. Tombacz, The effect of humic acid adsorption on pH-dependent sur-
            face charging and aggregation of magnetite nanoparticles. Journal of Colloid and
            Interface Science, 2006. 295: p. 115–123.
         89. Labille, J., et al., Flocculation of colloidal clay by bacterial polysaccharides: effect of
            macromolecule charge and structure. Journal of Colloid and Interface Science, 2005.
            284(1): p. 149–156.
         90. Lowry, G.V., et al., Macroscopic and microscopic observations of particle-facilitated
            mercury transport from New Idria and sulfur bank mercury mine tailings.
            Environmental Science & Technology, 2004. 38: p. 5101–5111.
         91. Thoral, S., et al., XAS study of iron and arsenic speciation during Fe(II) oxidation in
            the presence of As(III). Environmental Science & Technology, 2005. 39(24): p. 9478–9485.
         92. Slowey, A.J., et al., Role of organic acids in promoting colloidal transport or mercury
            from mine tailings. Environmental Science & Technology, 2005. 39: p. 7869–7874.
         93. Costerton, J.W., et al., Bacterial biofilms in nature and disease. Annual Review of
            Microbiology, 1987. 41: p. 435–464.
         94. Ballance, S., et al., Influence of sediment biofilm on the behaviour of aluminum and
            its bioavailability to the snail Lymnaea stagnalis in neutral freshwater. Canadian
            Journal of Fisheries and Aquatic Sciences, 2001. 58(9): p. 1708–1715.
         95. Battin, T.J., et al., Contributions of microbial biofilms to ecosystem processes in
            stream mesocosms. Nature, 2003. 426(6965): p. 439–442.
         96. Jordan, R.N.,  Evaluating biofilm activity in response to mass transfer-limited
            bioavailability of sorbed nutrients. Biofilms, 1999. 310: p. 393–402.
         97. Havlin, S., and D. Ben-Avraham, Diffusion in disordered media. Advances in Physics,
            2002. 51(1): p. 187–292.
         98. Havlin, S., and D. Ben-Avraham, Diffusion in disordered media. Advances in Physics,
            1987. 36(695–798).
         99. Fatin-Rouge, N., et al., Diffusion and partitioning of solutes in agarose hydrogels:
            the relative influence of electrostatic and specific interactions. J. Phys. Chem. B,
            2003. 107(44): p. 12126–12137.
        100. Fatin-Rouge, N., K. Starchev, and J. Buffle, Size effects on diffusion processes within
            agarose gels. Biophysical Journal, 2004. 86: p. 2710–2719.
        101. Fatin-Rouge, N., et al., A global approach of diffusion in agarose gels from SANS and
            FCS experiments, to be submitted.
        102. Giddings, J.C., et al., Statistical theory for the equilibrium distribution of rigid mol-
            ecules in inert porous networks. Exclusion chromatography. Journal of Physical
            Chemistry, 1968. 72(13): p. 4397–4408.
        103. Alexander, S., and R. Orbach, Density of States on Fractals-Fractons. Journal De
            Physique Lettres, 1982. 43(17): p. L625–L631.
        104. Webman, I., Effective-medium approximation for diffusion on a random lattice.
            Physical Review Letters, 1981. 47(21): p. 1496–1499.
        105. Benavraham, D., and S. Havlin, Diffusion on percolation clusters at criticality.
            Journal of Physics a-Mathematical and General, 1982. 15(12): p. L691–L697.
        106. Gefen, Y., A. Aharony, and S. Alexander, Anomalous diffusion on percolating clusters.
            Physical Review Letters, 1983. 50(1): p. 77–80.
        107. Rammal, R., and G. Toulouse, Random-walks on fractal structures and percolation
            clusters. Journal De Physique Lettres, 1983. 44(1): p. L13–L22.
        108. Labille, J., N. Fatin-Rouge, and J. Buffle, Solutes diffusion in agarose gel. Effects of
            gel relaxation and local structure at gel/solution interface. Environmental Chemistry,
            submitted.
        109. Lacroix-Gueu, P., et al., In situ measurements of viral particles diffusion inside
            mucoid biofilms. Comptes Rendus Biologies, 2005. 328(12): p. 1065–1072.
        110. Pluen, A., et al., Diffusion of macromolecules in agarose gels: comparison of linear
            and globular configurations. Biophysical Journal, 1999. 77(1): p. 542–552.
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