Geoscience Reference
In-Depth Information
Ma, Q.Y., Traina, S.J., Logan, T.J. & Ryan, J.A . : Effects of aqueous Al, Cd, Cu, Fe(II), Ni, and Zn on Pb
immobilization by hydroxyapatite. Environ. Sci. Technol. 28 (1994), pp. 1219-1228.
Mackenzie, P.D., Sivavec, T.M. & Horney, D.P.: Mineral precipitation and porosity losses in iron treatment
zones. 213 th Meeting, American Chemical Society , San Francisco, CA. Preprint Extended Abstracts,
Division of Environmental Chemistry, 37 (1997), pp. 154-157.
McCormick, M. L., Bouwer, E. J. & Adriaens, P.: Carbon tetrachloride transformation in a model iron-
reducing culture: relative kinetics of biotic and abiotic reactions. Environ. Sci. Technol . 36 (2002), pp. 403-
410.
McRae, C.W.T.: Evaluation of reactive materials for in situ treatment of arsenic III, arsenic V and Selenium
VI using permeable reactive barriers: laboratory study . MSc Thesis, University of Waterloo, Waterloo,
Ontario, Canada, 1999.
Morgada, M.E., Levy, I.K., Salomone, V., Farías, S.S., López, G. & Litter, M.I.: Arsenic (V) removal
with nanoparticulate zerovalent iron: effect of UV light and humic acids. Catal. Today 143 (2009),
pp. 261-268.
Morrison, S.J., Mushovic, P.S. & Niesen, P.L.: Early breakthrough of molybdenum and uranium in a
permeable reactive barrier. Environ. Sci. Technol . 40 (2006), pp. 2018-2024.
Müller, C. & Nowack, B.: Nano-zero valent iron-THE solution for soil and groundwater remediation?, Report
of the Observatory NANO, 2010. www.observatorynano.eu (accessed July 2012).
Müller, N.C., Braun, J., Bruns, J., Cernik, M., Rissing, P., Rickerby, D. & Nowack, B.: Application of
nanoscale zero valent iron (NZVI) for groundwater remediation in Europe. Environ. Sci. Pollut. Res. 19
(2012), pp. 550-558.
Nikolaidis, N.P., Dobbs, G.M & Lackovic, J.A.: Arsenic removal by zerovalent iron: field, laboratory and
modeling studies. Water Res . 37 (2003), pp. 1417-1425.
Nowack, B. & Bucheli, T.D.: Occurrence, behavior and effects of nanoparticles in the environment. Environ.
Pollut. 150 (2007), pp. 5-22.
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. & Driessen, M.D.: Characterization and properties of metallic
iron nanoparticles: spectroscopy, electrochemistry, and kinetics. Environ. Sci. Technol . 39 (2005),
pp. 1221-1230.
O'Hannesin, S.F. & Gillham, R.W.: Long-term performance of an in situ iron wall for remediation VOCs.
Groundwater 36 (1998), pp. 164-170.
Phillips, D.H., Watson, D.B., Roh, Y. & Gu, B.: Mineralogical characteristics and transformations during
long-termoperation of a zerovalent iron reactive barrier. J. Environ. Qual . 32 (2003), pp. 2033-2045.
Ponder, S.: Surface chemistry and electrochemistry of supported zerovalent iron nanoparticles in the
remediation of aqueous metal contaminants. Chem. Mater . 13 (2003), pp. 479-486.
Ponder, S.M., Darab, J.G. & Mallouk, T.E.: Remediation of Cr(VI) and Pb(II) aqueous solutions using
supported, nanoscale zero-valent iron. Environ. Sci. Technol . 34 (2000), pp. 2564-2569.
Powell, R.M. & Puls, R.W.: Proton generation by dissolution of intrinsic or augmented aluminosilicate
minerals for in situ contaminant remediation by zero valence-state iron. Environ. Sci. Technol . 31 (1997),
pp. 2244-2251.
Powell, R.M., Puls, W.P., Hightower, S.K. & Sabatini, D.A.: Coupled iron corrosion and chromate reduction:
mechanisms for subsurface remediation. Environ. Sci. Technol . 29 (1995), pp. 1913-1922.
Ptacek, C.J., Blowes, D.W., Robertson, W.D. & Baker, M.J.: Adsorption and mineralization of phosphate
from septic system effluent in aquifer materials. Wastewater Nutrient Removal Technologies and Onsite
Management Districts, Conference Proceedings, Waterloo, Ontario, Canada, June 6, 1994.
Puls, R.W., Paul, C.J. & Powell, R.M.: The application of in situ permeable reactive (zerovalent iron) barrier
technology for the remediation of chromate-contaminated groundwater: a field test. Appl. Geochem .
14 (1999), pp. 989-1000.
Quinn, J., Geiger, C., Clausen, C., Brooks, K., Coon, C., O'Hara, S., Krug, T., Major, D., Yoon, W.-S.,
Gavaskar, A. & Holdworth, T.: Field demonstration of DNAPL dehalogenation using emulsified zero-
valent iron. Environ. Sci. Technol . 39 (2005), pp. 1309-1318.
Robinson, B.H., Khan-Lodhi, A.N. & Towey, T.: Microparticle synthesis and characterization in reverse
micelles. In: M. Pilen (ed): Structure and reactivity in reverse micelles . Elsevier, Amsterdam, The
Netherlands, 1989, pp. 199-219.
Roh, Y., Lee, S.Y. & Elless, M.P.: Characterization of corrosion products in the permeable reactive barriers.
Environ. Geol . 40 (2001), pp. 184-194.
Sacre, J.A.: Treatment walls: a status update. Ground-water Remediation Technologies Analysis Center,
TP-97-02. Pittsburgh, 1997 .http://www.gwratc.org (accessed June 2012).
Search WWH ::




Custom Search