Agriculture Reference
In-Depth Information
Banfield, J. F., & Zhang, H. (2001). Nanoparticles in the Environment, In “Nanoparticles and
the Environment.” (Banfield, J. F., & Navrotsky, A. Eds), 1-58, Mineralogical Society of
America, Washington DC Chapter 1.
Banfield, J., & Navrotsky, A. (2001). Nanoparticles and Environment.Reviews in Mineralogy
and Geochemistry, 44, Mineral. Soc. of Am. Washington, DC.
Bargar, J. R., Bernier-Latmani, R., Giammar, D. E., & Tebo, B. M. (2008). Biogenic Urani-
Biogenic Urani-
nite Nanoparticles and their importance for Uranium Remediation. Elements (Chantilly. VA,
U.S.), 4, 407-412.
Becker, L., Rietmeijer, F. J. M. (ed.,) (2006) Natural Fullerenes and Related Structure of El-
emental Carbon, Springer, Dordrecst, Netherland, 6, 95-121.
Blango, M. G., &. Mulvey, M. A. (2009). Bacterial landlines Contact-dependent Signaling in
Bacterial Populations, Curr. Opin. Microbiol, 12, 177-181.
Bose, S., Hochella, M. F., Gorby, Y. A., Kennedy, D. W., McCready, D. E., Madden, A. S., &
Lower, B. H. (2009). Bioreduction of Hematite Nanoparticles by the Dissimilatory Iron Re-
ducing Bacterium Sbewanella oneidensis MR-1, Geochim Cosmochim Acta, 73, 962-976.
BSI British Standard Institute. (2005). Vocabulary-Nanoparticles, Publicly available Specifica-
tion (PAS) 71, 25. Department of Trade Industries and British Standard Institution London,
UK.
Buffle, J. (2006). The Key Role of Environmental Colloids/Nanoparticles for them Sustainabil-
ity of life, Environ. Chem., 3, 155e158.
Canas, J. E., Long, M. Q., Nations, S, Vadan, R., Dai, L., Luo, M. X., Ambikapathi, R., Lee,
E. H., & Olszyk, D. (2008). Effects of Functionalized and Nonfunctionalized Single-walled
Carbon, Nanotubes on Root Elongation of Select Crop Species, Environ. Toxicol. Chem ., 27,
1922-1931.
Chadwick, O. A., Derry, L. A., Vitousek, P. M., Huebtert, B. J., &. Hedin, L. O. (1999). Chang-
ing Source of Nutrient During Four Million Years of Ecosystem Development, Nature, 397,
491-497.
Darlington, T. K., Neigh, A. M., Spencer, M. T., Nguyen, O. T., & Oldenburg, S. J. (2009).
Nanoparticles Characteristics Affecting Environmental Fate and Transport through Soil, En-
viron. Toxicol. Chem., 28, 1191-1199.
Eichert, T, Kurtz, A., Steiner, U., & Goldbach, H. E. Size Exclusion Limits and Lateral Hetero-
(2008). Biogenic Urani-
Biogenic Urani-
U., & Goldbach, H. E. Size Exclusion Limits and Lateral Hetero-
geneity of the Stomatal Folier Uptake Pathway for Aqueous Solutes and Water Suspended
Nano-particles, Physiol. Plant . 134, 151-160.
EPA nanotechnology White paper. U. S. Environmental Protection Agency Report EPA 100/B-
07/001, Washington DC 20460, USA, (2007).
Eriksson, E. (1952). Cation-exchange Equilibria on Clay Minerals, Soil Sci ., 74, 103-113.
Feitosa-Felizzola, J., Hanna, K., & Chiron, S. (2009). Adsorption and Transformation of Se-
lected Human-used Microlide Antibacterial agents with iron (III) and manganese (IV) oxide,
Environ. Pollut 157, 1317-1322.
Fleischer, M. A., Neill, O., & Ehwald, R. (1999). The Pore Size of Non-graminaceous Plant Cell
Wall is rapidly decreased by Borate Ester Cross-Linking of the Pectic Polysaccharide Rham-
nogalacturon II, Plant physiol ., 121, 829-838.
Ghosh, S., Mashayekhi, H., Pan, B., Bhowmik, P., & Xing, B. S. (2008). Colloidal Behavior of
Aluminum Oxide Nano-particles as Affected by pH and Natural Organic Matter, Langmuir,
24, 12385-12391.
Search WWH ::




Custom Search