266
T. Sahoo et al.
Baun A, Hartmann NB, Grieger K, Ole Kusk K (2008) Ecotoxicity of engineered nanoparticles to aquatic invertebrates: a brief review and recommendations for future toxicity testing.
Ecotoxicology 17(5):387–395
Bergamaschi E, Bussolati O, Magrini A, Bottini M, Migliore L, Bellucci S, Iavicoli I, Bergamaschi
A (2006) Nanomaterials and lung toxicity: interactions with airways cells and relevance for
occupational health risk assessment. Int J Immunopathol Pharmacol 19(4 Suppl):3–10
Bermudez E, Mangum JB, Wong BA, Asgharian B, Hext PM, Warheit DB, Everitt JI (2004) Pulmonary responses of mice, rats, and hamsters to subchronic inhalation of ultrafine titanium dioxide
particles. Toxicol Sci 77(2):347–357
Boparai HK, Joseph M, O’Carroll DM (2011) Kinetics and thermodynamics of cadmium ion
removal by adsorption onto nanozerovalent iron particles. J Hazard Mater 186(1):458–465
Bystrzejewska-Piotrowska G, Golimowski J, Urban PL (2009) Nanoparticles: their potential
toxicity, waste and environmental management. Waste Manag 29(9):2587–2595
Camblor MA, Corma A, Valencia S (1998) Characterization of nanocrystalline zeolite Beta.
Microporous Mesoporous Mater 25(1–3):59–74
Cao J, Elliott D, Zhang W (2005) Perchlorate reduction by nanoscale iron particles. J Nanopart Res
7(4–5):499–506
Carabante I, Grahn M, Holmgren A, Kumpiene J, Hedlund J (2009) Adsorption of As (V) on iron
oxide nanoparticle films studied by in situ ATR-FTIR spectroscopy. Colloids Surf A 346(1–
3):106–113
Chaudhari TD, Eapen S, Fulekar MH (2009) Characterization of industrial waste and identification
of potential micro-organism degrading tributyl phosphate. J Toxicol Environ Health Sci 1(1):001–
007
Choe S, Chang Y-Y, Hwang K-Y, Khim J (2000) Kinetics of reductive denitrification by nanoscale
zero-valent iron. Chemosphere 41(8):1307–1311
Crane RA, Dickinson M, Popescu IC, Scott TB (2011) Magnetite and zero-valent iron nanoparticles
for the remediation of uranium contaminated environmental water. Water Res 45(9):2931–2942
Dale AL, Casman EA, Lowry GV, Lead JR, Viparelli E, Baalousha M (2015) Modeling nanomaterial
environmental fate in aquatic systems, 2587–2593
Das S, Sen B, Debnath N (2015) Recent trends in nanomaterials applications in environmental
monitoring and remediation. Environ Sci Pollut Res 22(23):18333–18344
Ding L, Zheng Y (2007) Nanocrystalline zeolite beta: The effect of template agent on crystal size.
Mater Res Bull 42(3):584–590
Divya M, Aanand S, Srinivasan A, Ahilan B (2015) Bioremediation–an eco-friendly tool for effluent
treatment: a review. Int J Appl Res 1(12):530–537
Dubey SK, Dubey J, Mehra S, Tiwari P, Bishwas AJ (2011) Potential use of cyanobacterial species
in bioremediation of industrial effluents. Afr J Biotech 10(7):1125–1132
Elder A, Yang H, Gwiazda R, Teng X, Thurston S, He H, Oberdörster G (2007) Testing nanomaterials
of unknown toxicity: an example based on platinum nanoparticles of different shapes. Adv Mater
19(20):3124–3129
Engates KE, Shipley HJ (2011) Adsorption of Pb, Cd, Cu, Zn, and Ni to titanium dioxide
nanoparticles: effect of particle size, solid concentration, and exhaustion. Environ Sci Pollut
Res 18(3):386–395
Fan H, Zhang T, Xu X, Lv N (2011) Fabrication of N-type Fe 2 O 3 and P-type LaFeO 3 nanobelts by
electrospinning and determination of gas-sensing properties. Sens Actuators B: Chem 153(1):83–
88
Fang Q-R, Yuan D-Q, Sculley J, Li J-R, Han Z-B, Zhou H-C (2010) Functional mesoporous metal—
organic frameworks for the capture of heavy metal ions and size-selective catalysis. Inorg Chem
49(24):11637–11642
Farré M, KrisztinaGajda-Schrantz L, Barceló D (2009) Ecotoxicity and analysis of nanomaterials
in the aquatic environment. Anal Bioanal Chem 393(1):81–95
Fratoddi I, Venditti I, Cametti C, Russo MV (2015) How toxic are gold nanoparticles? The stateof-the-art. Nano Res 8(6):1771–1799
T. Sahoo et al.
Baun A, Hartmann NB, Grieger K, Ole Kusk K (2008) Ecotoxicity of engineered nanoparticles to aquatic invertebrates: a brief review and recommendations for future toxicity testing.
Ecotoxicology 17(5):387–395
Bergamaschi E, Bussolati O, Magrini A, Bottini M, Migliore L, Bellucci S, Iavicoli I, Bergamaschi
A (2006) Nanomaterials and lung toxicity: interactions with airways cells and relevance for
occupational health risk assessment. Int J Immunopathol Pharmacol 19(4 Suppl):3–10
Bermudez E, Mangum JB, Wong BA, Asgharian B, Hext PM, Warheit DB, Everitt JI (2004) Pulmonary responses of mice, rats, and hamsters to subchronic inhalation of ultrafine titanium dioxide
particles. Toxicol Sci 77(2):347–357
Boparai HK, Joseph M, O’Carroll DM (2011) Kinetics and thermodynamics of cadmium ion
removal by adsorption onto nanozerovalent iron particles. J Hazard Mater 186(1):458–465
Bystrzejewska-Piotrowska G, Golimowski J, Urban PL (2009) Nanoparticles: their potential
toxicity, waste and environmental management. Waste Manag 29(9):2587–2595
Camblor MA, Corma A, Valencia S (1998) Characterization of nanocrystalline zeolite Beta.
Microporous Mesoporous Mater 25(1–3):59–74
Cao J, Elliott D, Zhang W (2005) Perchlorate reduction by nanoscale iron particles. J Nanopart Res
7(4–5):499–506
Carabante I, Grahn M, Holmgren A, Kumpiene J, Hedlund J (2009) Adsorption of As (V) on iron
oxide nanoparticle films studied by in situ ATR-FTIR spectroscopy. Colloids Surf A 346(1–
3):106–113
Chaudhari TD, Eapen S, Fulekar MH (2009) Characterization of industrial waste and identification
of potential micro-organism degrading tributyl phosphate. J Toxicol Environ Health Sci 1(1):001–
007
Choe S, Chang Y-Y, Hwang K-Y, Khim J (2000) Kinetics of reductive denitrification by nanoscale
zero-valent iron. Chemosphere 41(8):1307–1311
Crane RA, Dickinson M, Popescu IC, Scott TB (2011) Magnetite and zero-valent iron nanoparticles
for the remediation of uranium contaminated environmental water. Water Res 45(9):2931–2942
Dale AL, Casman EA, Lowry GV, Lead JR, Viparelli E, Baalousha M (2015) Modeling nanomaterial
environmental fate in aquatic systems, 2587–2593
Das S, Sen B, Debnath N (2015) Recent trends in nanomaterials applications in environmental
monitoring and remediation. Environ Sci Pollut Res 22(23):18333–18344
Ding L, Zheng Y (2007) Nanocrystalline zeolite beta: The effect of template agent on crystal size.
Mater Res Bull 42(3):584–590
Divya M, Aanand S, Srinivasan A, Ahilan B (2015) Bioremediation–an eco-friendly tool for effluent
treatment: a review. Int J Appl Res 1(12):530–537
Dubey SK, Dubey J, Mehra S, Tiwari P, Bishwas AJ (2011) Potential use of cyanobacterial species
in bioremediation of industrial effluents. Afr J Biotech 10(7):1125–1132
Elder A, Yang H, Gwiazda R, Teng X, Thurston S, He H, Oberdörster G (2007) Testing nanomaterials
of unknown toxicity: an example based on platinum nanoparticles of different shapes. Adv Mater
19(20):3124–3129
Engates KE, Shipley HJ (2011) Adsorption of Pb, Cd, Cu, Zn, and Ni to titanium dioxide
nanoparticles: effect of particle size, solid concentration, and exhaustion. Environ Sci Pollut
Res 18(3):386–395
Fan H, Zhang T, Xu X, Lv N (2011) Fabrication of N-type Fe 2 O 3 and P-type LaFeO 3 nanobelts by
electrospinning and determination of gas-sensing properties. Sens Actuators B: Chem 153(1):83–
88
Fang Q-R, Yuan D-Q, Sculley J, Li J-R, Han Z-B, Zhou H-C (2010) Functional mesoporous metal—
organic frameworks for the capture of heavy metal ions and size-selective catalysis. Inorg Chem
49(24):11637–11642
Farré M, KrisztinaGajda-Schrantz L, Barceló D (2009) Ecotoxicity and analysis of nanomaterials
in the aquatic environment. Anal Bioanal Chem 393(1):81–95
Fratoddi I, Venditti I, Cametti C, Russo MV (2015) How toxic are gold nanoparticles? The stateof-the-art. Nano Res 8(6):1771–1799
