312
107. Al-Bastaki, N.M., 2004. Performance of advanced methods for treatment of wastewater: UV/
TiO2, RO and UF. Chemical Engineering and Processing 43 (7), 935-940.
108. Benotti, M.J., Stanford, B.D., Wert, E.C., Snyder, S.A., 2009. Evaluation of a photocatalytic reactor membrane pilot system of pharmaceuticals and endocrine disrupting compounds
from water. Water Res. 43, 1513-1522.
109. Westerhoff, P., Moon, H., Minakata, D., Crittenden, J., 2009. Oxidation of organics in retentates from reverse osmosis wastewater reuse facilities. Water Research 43 (16), 3992-3998.
110. Nawrocki, J., Kasprzyk-Hordern, B., 2010. The efficiency and mechanisms of catalytic ozonation. Applied Catalysis B Environmental 99 (1-2), 27-42.
111. Orge, C.A., Orfao, J.J.M., Pereira, M.F.R., de Farias, A.M.D., Neto, R.C.R., Fraga, M.A.,
2011. Ozonation of model organic compounds catalysed by nanostructured cerium oxides.
Applied Catalysis B-Environmental 103 (1-2), 190-199.
112. Li, Q.L., Mahendra, S., Lyon, D.Y., Brunet, L., Liga, M.V., Li, D., Alvarez, P.J.J., 2008.
Antimicrobial nanomaterials for water disinfection and microbial control: potential applications and implications. Water Research 42 (18), 4591-4602.
113. Xiu, Z.M., Ma, J., Alvarez, P.J.J., 2011. Differential effect of common ligands and molecular
oxygen on antimicrobial activity of silver nanoparticles versus silver ions. Environmental
Science and Technology 45 (20), 9003-9008.
114. Xiu, Z.M., Zhang, Q.B., Puppala, H.L., Colvin, V.L., Alvarez, J.J.P., 2012. Negligible particle-specific antibacterial activity of silver nanoparticles. Nano Letters 12 (8), 4271-4275.
115. Liau, S.Y., Read, D.C., Pugh, W.J., Furr, J.R., Russell, A.D., 1997. Interaction of silver nitrate
with readily identifiable groups: relationship to the antibacterial action of silver ions. Letters
in Applied Microbiology 25 (4), 279-283.
116. Liu, S.B., Zeng, T.H., Hofmann, M., Burcombe, E., Wei, J., Jiang, R.R., Kong, J., Chen, Y.,
2011a. Antibacterial activity of graphite, graphite oxide, graphene oxide, and reduced graphene oxide: membrane and oxidative stress. Acs Nano 5 (9), 6971-6980.
117. Vecitis, C.D., Zodrow, K.R., Kang, S., Elimelech, M., 2010. Electronic-structure-dependent
bacterial cytotoxicity of single-walled carbon nanotubes. Acs Nano 4 (9), 5471-5479.
118. Kang, S., Herzberg, M., Rodrigues, D.F., Elimelech, M., 2008a. Antibacterial effects of carbon nanotubes: size does matter. Langmuir 24 (13), 6409-6413.
119. Kang, S., Mauter, M.S., Elimelech, M., 2008b. Physicochemical determinants of multiwalled
carbon nanotube bacterial cytotoxicity. Environmental Science and Technology 42 (19),
7528-7534.
120. Peter-Varbanets, M., Zurbrugg, C., Swartz, C., Pronk, W., 2009. Decentralized systems for
potable water and the potential of membrane technology. Water Research 43 (2), 245-265.
121. Brady-Estevez, A.S., Schnoor, M.H., Kang, S., Elimelech, M., 2010. SWNT-MWNT hybrid
filter attains high viral removal and bacterial inactivation. Langmuir 26 (24), 19153-19158.
122. Rahaman, M.S., Vecitis, C.D., Elimelech, M., 2012. Electrochemical carbon-nanotube filter
performance toward virus removal and inactivation in the presence of natural organic matter.
Environmental Science and Technology 46 (3), 1556-1564.
123. Vecitis, C.D., Schnoor, M.H., Rahaman, M.S., Schiffman, J.D., Elimelech, M., 2011.
Electrochemical multiwalled carbon nanotube filter for viral and bacterial removal and inactivation. Environmental Science and Technology 45 (8), 3672-3679.
124. Theron, J., Cloete, T.E., de Kwaadsteniet, M., 2010. Current molecular and emerging nanobiotechnology approaches for the detection of microbial pathogens. Critical Reviews in
Microbiology 36 (4), 318-339.
125. Vikesland, P.J., Wigginton, K.R., 2010. Nanomaterial enabled biosensors for pathogen monitoring – a review. Environmental Science and Technology 44 (10), 3656-3669.
126. Yan, J.L., Estevez, M.C., Smith, J.E., Wang, K.M., He, X.X., Wang, L., Tan, W.H., 2007.
Dye-doped nanoparticles for bioanalysis. Nano Today 2 (3), 44-50.
127. Petryayeva, E., Krull, U.J., 2011. Localized surface plasmon resonance: nanostructures, bioassays and biosensing e a review. Analytica Chimica Acta 706 (1), 8-24.
13 Wastewater
107. Al-Bastaki, N.M., 2004. Performance of advanced methods for treatment of wastewater: UV/
TiO2, RO and UF. Chemical Engineering and Processing 43 (7), 935-940.
108. Benotti, M.J., Stanford, B.D., Wert, E.C., Snyder, S.A., 2009. Evaluation of a photocatalytic reactor membrane pilot system of pharmaceuticals and endocrine disrupting compounds
from water. Water Res. 43, 1513-1522.
109. Westerhoff, P., Moon, H., Minakata, D., Crittenden, J., 2009. Oxidation of organics in retentates from reverse osmosis wastewater reuse facilities. Water Research 43 (16), 3992-3998.
110. Nawrocki, J., Kasprzyk-Hordern, B., 2010. The efficiency and mechanisms of catalytic ozonation. Applied Catalysis B Environmental 99 (1-2), 27-42.
111. Orge, C.A., Orfao, J.J.M., Pereira, M.F.R., de Farias, A.M.D., Neto, R.C.R., Fraga, M.A.,
2011. Ozonation of model organic compounds catalysed by nanostructured cerium oxides.
Applied Catalysis B-Environmental 103 (1-2), 190-199.
112. Li, Q.L., Mahendra, S., Lyon, D.Y., Brunet, L., Liga, M.V., Li, D., Alvarez, P.J.J., 2008.
Antimicrobial nanomaterials for water disinfection and microbial control: potential applications and implications. Water Research 42 (18), 4591-4602.
113. Xiu, Z.M., Ma, J., Alvarez, P.J.J., 2011. Differential effect of common ligands and molecular
oxygen on antimicrobial activity of silver nanoparticles versus silver ions. Environmental
Science and Technology 45 (20), 9003-9008.
114. Xiu, Z.M., Zhang, Q.B., Puppala, H.L., Colvin, V.L., Alvarez, J.J.P., 2012. Negligible particle-specific antibacterial activity of silver nanoparticles. Nano Letters 12 (8), 4271-4275.
115. Liau, S.Y., Read, D.C., Pugh, W.J., Furr, J.R., Russell, A.D., 1997. Interaction of silver nitrate
with readily identifiable groups: relationship to the antibacterial action of silver ions. Letters
in Applied Microbiology 25 (4), 279-283.
116. Liu, S.B., Zeng, T.H., Hofmann, M., Burcombe, E., Wei, J., Jiang, R.R., Kong, J., Chen, Y.,
2011a. Antibacterial activity of graphite, graphite oxide, graphene oxide, and reduced graphene oxide: membrane and oxidative stress. Acs Nano 5 (9), 6971-6980.
117. Vecitis, C.D., Zodrow, K.R., Kang, S., Elimelech, M., 2010. Electronic-structure-dependent
bacterial cytotoxicity of single-walled carbon nanotubes. Acs Nano 4 (9), 5471-5479.
118. Kang, S., Herzberg, M., Rodrigues, D.F., Elimelech, M., 2008a. Antibacterial effects of carbon nanotubes: size does matter. Langmuir 24 (13), 6409-6413.
119. Kang, S., Mauter, M.S., Elimelech, M., 2008b. Physicochemical determinants of multiwalled
carbon nanotube bacterial cytotoxicity. Environmental Science and Technology 42 (19),
7528-7534.
120. Peter-Varbanets, M., Zurbrugg, C., Swartz, C., Pronk, W., 2009. Decentralized systems for
potable water and the potential of membrane technology. Water Research 43 (2), 245-265.
121. Brady-Estevez, A.S., Schnoor, M.H., Kang, S., Elimelech, M., 2010. SWNT-MWNT hybrid
filter attains high viral removal and bacterial inactivation. Langmuir 26 (24), 19153-19158.
122. Rahaman, M.S., Vecitis, C.D., Elimelech, M., 2012. Electrochemical carbon-nanotube filter
performance toward virus removal and inactivation in the presence of natural organic matter.
Environmental Science and Technology 46 (3), 1556-1564.
123. Vecitis, C.D., Schnoor, M.H., Rahaman, M.S., Schiffman, J.D., Elimelech, M., 2011.
Electrochemical multiwalled carbon nanotube filter for viral and bacterial removal and inactivation. Environmental Science and Technology 45 (8), 3672-3679.
124. Theron, J., Cloete, T.E., de Kwaadsteniet, M., 2010. Current molecular and emerging nanobiotechnology approaches for the detection of microbial pathogens. Critical Reviews in
Microbiology 36 (4), 318-339.
125. Vikesland, P.J., Wigginton, K.R., 2010. Nanomaterial enabled biosensors for pathogen monitoring – a review. Environmental Science and Technology 44 (10), 3656-3669.
126. Yan, J.L., Estevez, M.C., Smith, J.E., Wang, K.M., He, X.X., Wang, L., Tan, W.H., 2007.
Dye-doped nanoparticles for bioanalysis. Nano Today 2 (3), 44-50.
127. Petryayeva, E., Krull, U.J., 2011. Localized surface plasmon resonance: nanostructures, bioassays and biosensing e a review. Analytica Chimica Acta 706 (1), 8-24.
13 Wastewater
