Page 60 - ACCB 2020
P. 60
Revista de la Asociación Colombiana de Ciencias Biológicas
issn impreso 0120-4173, issn en línea 2500-7459
124. Mohammad, A.W., Teow, Y.H., Ang, W.L., Chung, Y.T., Oatley-Radcliffe, D.L. and Hilal, N. (2014)
Nanofi ltration membranes review: recent advances and future prospects. Desalination, 356, 226–254.
125. Janegitz, B.C., dos Santos, F.A., Faria, R.C. and Zucolotto, V. (2014) Electrochemical determination
of estradiol using a thin fi lm containing reduced graphene oxide and dihexadecylphosphate. Mater Sci
Eng C Mater Biol Appl 37, 14–19.
126. Wen, Y., Niu, Z., Ma, Y., Ma, J. and Chen, L. (2014) Graphene oxide-based microspheres for the dis-
persive solid-phase extraction of non-steroidal estrogens from water samples. J Chromatogr A, 1368,
18–25.
127. Padhye, L.P., Yao, H., Kung’u, F.T. and Huang, C.-H. (2014) Year-long evaluation on the occurrence
and fate of pharmaceuticals, personal care products, and endocrine disrupting chemicals in an urban
drinking water treatment plant. Water Res, 51, 266–276.
128. Jiang, X., Jiang, Y., Shi, G. and Zhou, T. (2014). Graphene oxide coated capillary for the analysis of
endocrine-disrupting chemicals by open-tubular capillary electrochromatography with amperometric
detection. J Sep Sci, 37, 1671–1678.
129. Xue, F., Gao, Z.-Y., Sun, X.-M., Yang, Z.-S., Yi, L.-F. and Chen, W. (2015) Electrochemical determi-
nation of environmental hormone nonylphenol based on composite fi lm modifi ed gold electrode. J
Electrochem Soc, 162, H338–H344.
130. Zeumer, R., Hermsen, L., Kaegi, R., Kühr, S., Knop, B. and Schlechtriem, C.(2020) Bioavailability of
silver from wastewater and planktonic food borne silver nanoparticles in the rainbow trout Oncorhyn-
chus mykiss. Sci Tot Env, 706, 135695.
131. Nowack, B. and Bucheli, T.D. (2007) Occurrence, behavior and effects of nanoparticles in the environ-
ment. Environ Pollut, 150(1),5-22.
132. Marimuthu,S., Antonisamy, A., Malayandi, S., Rajendran, K., Tsai, P-C, Pugazhendhi, A. et al (2020)
Silver nanoparticles in dye effl uent treatment: a review on synthesis, treatment methods, mechanisms,
photocatalytic degradation, toxic effects and mitigation of toxicity. J Photochem Photobio B: Bio, 205,
111823.
133. Loosli,F., Wang, J., Rothenberg, S., Bizimis,M., Winkler,C., Borovinskaya, O., Flamignie, L. and
Baalousha, M. (2019) Sewage spills are a major source of titanium dioxide engineered (nano)-particle
release into the environment. Env Sci: Nano, 6, 763-777
134. Benn, T.M. and Westerhoff, P. (2008) Nanoparticle silver released into water from commercially avai-
lable sock fabrics. Environ Sci Technol, 42, 4133–4139.
135. Kaegi, R., Ulrich, A., Sinnet, B., Vonbank, R., Wichser, A., Zuleeg, S. et al (2008) Synthetic TiO na-
2
noparticle emission from exterior facades into the aquatic environment. Environ Pollut 156: 233–239.
136. Mueller, N.C. and Nowack, B. (2008) Exposure modeling of engineered nanoparticles in the environ-
ment. Environ Sci Technol, 42, 4447–4453.
137. Kiser, M.A., Ryu, H., Jang, H., Hristovski, K. and Westerhoff, P. (2010) Biosorption of nanoparticles
to heterotrophic wastewater biomass. Water Res, 44, 4105–4114.
138. Holsapple, M.P., Farland, W.H., Landry, T.D., Monteiro-Riviere, N.A., Carter, J.M., Walker, N.J. et
al (2005) Research strategies for safety evaluation of nanomaterials, part II: toxicological and safety
evaluation of nanomaterials, current challenges and data needs. Toxicol Sci, 88, 12–17.
139. Powers, K.W., Brown, S.C., Krishna, V.B., Wasdo, S.C., Moudgil, B.M. and Roberts, S.M. (2006)
Research strategies for safety evaluation of nanomaterials. part VI. Characterization of nanoscale par-
ticles for toxicological evaluation. Toxicol Sci, 90, 296–303.
140. Lowry, G. V, Hotze, E.M., Bernhardt, E.S., Dionysiou, D.D., Pedersen, J.A., Wiesner, M.R. et al (2010)
Environmental occurrences, behavior, fate, and ecological effects of nanomaterials: an introduction to
the special series. J Environ Qual, 39, 1867–1874.
141. Mackevica, A., Skjolding, L.M., Gergs, A., Palmqvist, A. and Baun, A. (2015) Chronic toxicity of
silver nanoparticles to Daphnia magna under different feeding conditions. Aquat Toxicol, 161, 10–16.
142. Starnes, D.L., Unrine, J.M., Starnes, C.P., Collin, B.E., Oostveen, E.K., Ma, R. et al (2015) Impact of
sulfi dation on the bioavailability and toxicity of silver nanoparticles to Caenorhabditis elegans. Envi-
ron Pollut, 196:239-246.
143. Książyk, M., Asztemborska, M., Stęborowski, R. and Bystrzejewska-Piotrowska, G. (2015) Toxic
effect of silver and platinum nanoparticles toward the freshwater microalga Pseudokirchneriella sub-
capitata. Bull Environ Contam Toxicol, 94, 554–558.
144. Dominguez, G.A., Lohse, S.E., Torelli, M.D., Murphy, C.J., Hamers, R.J., Orr, G. et al (2015) Effects
60
Rev. Asoc. Col. Cienc.(Col.), 2020; 32: 42-62.