Biomedical Engineering Reference
In-Depth Information
REFERENCES
Auffan, M., Pedeutour, M., Rose, J., Masion, A., Ziarelli, F., Borschneck, D., Chaneac,
C., Botta, C., Chaurand, P., Labille, J., Bottero, J.Y. (2010) Structural degradation at
the surface of a TiO 2 -based nanomaterial used in cosmetics. Environ Sci Technol 44,
2689-2694.
Baun, A., Hartmann, N.B., Grieger, K., Kusk, K.O. (2008) Ecotoxicity of engineered nanopar-
ticles to aquatic invertebrates: a brief review and recommendations for future toxicity
testing. Ecotoxicology 17: 387-395.
Benn, T., Cavanagh, B., Hristovski, K., Posner, J.D., Westerhoff, P. (2010) The release of
nanosilver from consumer products used in the home. J Environ Quality 39: 1875-1882.
Benn, T.M., Westerhoff, P. (2008) Nanoparticle silver released into water from commercially
available sock fabrics. Environ Sci Technol 42: 4133-4139.
Blaser, S.A., Scheringer, M., MacLeod, M., Hungerbuhler, K. (2008) Estimation of cumula-
tive aquatic exposure and risk due to silver: Contribution of nano-functionalized plastics
and textiles. Sci Total Environ 390: 396-409.
Botta, C., Labille, J., Auffan, M., Borschneck, D., Miche, H., Cabie, M., Masion, A., Rose,
J., Bottero, J.Y. (2011) TiO 2 -based nanoparticles released in water from commercial-
ized sunscreens in a life-cycle perspective: Structures and quantities. Environmental
Pollution 159: 1543-1548.
Boxall, A.B.A., Chaudhry, Q., Sinclair, C., Jones, A.D., Aitken, R., Jefferson, B., Watts, C.
(2007) Current and future predicted environmental exposure to engineered nanopar-
ticles. Central Science Laboratory, Sand Hutton, UK.
Broekhuizen, P., Broekhuizen, F., Cornelissen, R., Reijnders, L. (2011) Use of nanomaterials
in the European construction industry and some occupational health aspects thereof.
J Nanopart Res 13: 447-462.
Chabas, A., Lombardo, T., Cachier, H., Pertuisot, M.H., Oikonomou, K., Falcone, R., Verita,
M., Geotti-Bianchini, F. (2008) Behaviour of self-cleaning glass in urban atmosphere.
Building Environ 43: 2124-2131.
Cleveland, D., Long, S.E., Pennington, P.L., Cooper, E., Fulton, M.H., Scott, G.I., Brewer,
T., Davis, J., Petersen, E.J., Wood, L. (2012) Pilot estuarine mesocosm study on the
environmental fate of Silver nanomaterials leached from consumer products. Sci Total
Environ 421: 267-272.
DEPA (2012) Assessment of nanosilver in textiles on the Danish market. Environmental
Project No. 1432. Copenhagen, Danish Environmental Protection Agency.
Dhanirama, D., Gronow, J., Voulvoulis, N. (2011) Cosmetics as a potential source of environ-
mental contamination in the UK. Environ Technol 33: 1597-1608.
Elzey, S., Grassian, V.H. (2010) Agglomeration, isolation and dissolution of commercially
manufactured silver nanoparticles in aqueous environments. J Nanopart Res 12:
1945-1958.
Farkas, J., Peter, H., Christian, P., Urrea, J.A.G., Hassellov, M., Tuoriniemi, J., Gustafsson, S.,
Olsson, E., Hylland, K., Thomas, K.V. (2011) Characterization of the effluent from a
nanosilver producing washing machine. Environ Int 37: 1057-1062.
Farre, M., Sanchis, J., Barcelo, D. (2011) Analysis and assessment of the occurrence, the fate and
the behavior of nanomaterials in the environment. Trac-Trends Anal Chem 30: 517-527.
Geranio, L., Heuberger, M., Nowack, B. (2009) Behavior of silver nano-textiles during
washing. Environ Sci Technol 43: 8113-8118.
Gottschalk, F., Nowack, B. (2011) Release of engineered nanomaterials to the environment.
J.   Environ Monitoring 13: 1145-1155.
Gottschalk, F., Scholz, R.W., Nowack, B. (2010a) Probabilistic material flow modeling for
assessing the environmental exposure to compounds: Methodology and an application
to engineered nano-TiO 2 particles. Environ Modeling Software 25: 320-332.
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