11 Nanotechnology: An Efficient Technique of Contaminated …
269
Reddy KR, Hassan M, Gomes VG (2015) Hybrid nanostructures based on titanium dioxide for
enhanced photocatalysis. Appl Catal A 489:1–16
Reddy PAK, Reddy PVL, Kwon E, Kim K-H, Akter T, Kalagara S (2016) Recent advances in
photocatalytic treatment of pollutants in aqueous media. Environ Int 91:94–103
Rivera JM, Rincón S, Youssef CB, Zepeda A (2016) Highly efficient adsorption of aqueous Pb (II)
with mesoporous metal-organic framework-5: an equilibrium and kinetic study. J Nanomaterials
Rossi LM, Costa NJ, Silva FP, Wojcieszak R (2014) Magnetic nanomaterials in catalysis: advanced
catalysts for magnetic separation and beyond. Green Chem 16(6):2906–2933
Rudd ND, Wang H, Fuentes-Fernandez EM, Teat SJ, Chen F, Hall G, Chabal YJ, Li J (2016) Highly
efficient luminescentmetal–organic framework for the simultaneous detection and removal of
heavy metals from water. ACS Appl Mater Interfaces 8(44):30294–30303
Sakthivel S, Kisch H (2003) Daylight photocatalysis by carbon-modified titanium dioxide. Angew
Chem Int Ed 42(40):4908–4911
Saleem H, Rafique U, Davies RP (2016) Investigations on post-synthetically modified UiO-66-NH2
for the adsorptive removal of heavy metal ions from aqueous solution. Microporous Mesoporous
Mater 221:238–244
Sharifi S, Behzadi S, Laurent S, Laird Forrest M, Stroeve P, Mahmoudi M (2012) Toxicity of
nanomaterials. Chem Soc Rev 41(6):2323–2343
Shipley HJ, Yean S, Kan AT, Tomson MB (2009) Adsorption of arsenic to magnetite nanoparticles:
effect of particle concentration, pH, ionic strength, and temperature. Environ Toxicol Chem: Int
J 28(3):509–515
Song W, Grassian VH, Larsen SC (2005) High yield method for nanocrystalline zeolite synthesis.
Chem Commun 23:2951–2953
Sun Z, Yan Z, Yao J, Beitler E, Zhu Y, Tour JM (2010) Growth of graphene from solid carbon
sources. Nature 468(7323):549
Szabó T, Németh J, Dékány I (2003) Zinc oxide nanoparticles incorporated in ultrathin layer silicate
films and their photocatalytic properties. Colloids Surf A 230(1–3):23–35
Tesh SJ, Scott TB (2014) Nano-composites for water remediation: a review. Adv Mater
26(35):6056–6068
Upadhyayula VKK, Deng S, Mitchell MC, Smith GB (2009) Application of carbon nanotube
technology for removal of contaminants in drinking water: a review. Sci Total Environ 408(1):1–13
Van der Bruggen B, Vandecasteele C (2003) Removal of pollutants from surface water and groundwater by nanofiltration: overview of possible applications in the drinking water industry. Environ
Pollut 122(3):435–445
Van der Bruggen B, Everaert K, Wilms D, Vandecasteele C (2001) Application of nanofiltration for
removal of pesticides, nitrate and hardness from ground water: rejection properties and economic
evaluation. J Membr Sci 193(2):239–248
Vasudevan S, Lakshmi J (2012) The adsorption of phosphate by graphene from aqueous solution.
Rsc Advances 2(12):5234–5242
Verma R, Dwivedi P (2013) Heavy metal water pollution-a case study. Recent Res Sci Technol 5(5)
Warheit DB, Webb TR, Sayes CM, Colvin VL, Reed KL (2006) Pulmonary instillation studies with
nanoscale TiO 2 rods and dots in rats: toxicity is not dependent upon particle size and surface
area. Toxicol Sci 91(1):227–236
Wang C-B, Zhang W-X (1997) Synthesizing nanoscale iron particles for rapid and complete
dechlorination of TCE and PCBs. Environ Sci Technol 31(7):2154–2156
White BR, Stackhouse BT, Holcombe JA (2009) Magnetic γ-Fe 2 O 3 nanoparticles coated with polyl-cysteine for chelation of As (III), Cu (II), Cd (II), Ni (II), Pb (II) and Zn (II). J Hazard Mater
161(2–3):848–853
Xu X, Bao Y, Song C, Yang W, Liu J, Lin L (2004) Microwave-assisted hydrothermal synthesis of
hydroxy-sodalite zeolite membrane. Microporous Mesoporous Mater 75(3):173–181
Xu P, Zeng GM, Huang DL, Feng CL, Shuang H, Zhao MH, Lai C et al (2012) Use of iron oxide
nanomaterials in wastewater treatment: a review. Sci Total Environ 424:1–10
269
Reddy KR, Hassan M, Gomes VG (2015) Hybrid nanostructures based on titanium dioxide for
enhanced photocatalysis. Appl Catal A 489:1–16
Reddy PAK, Reddy PVL, Kwon E, Kim K-H, Akter T, Kalagara S (2016) Recent advances in
photocatalytic treatment of pollutants in aqueous media. Environ Int 91:94–103
Rivera JM, Rincón S, Youssef CB, Zepeda A (2016) Highly efficient adsorption of aqueous Pb (II)
with mesoporous metal-organic framework-5: an equilibrium and kinetic study. J Nanomaterials
Rossi LM, Costa NJ, Silva FP, Wojcieszak R (2014) Magnetic nanomaterials in catalysis: advanced
catalysts for magnetic separation and beyond. Green Chem 16(6):2906–2933
Rudd ND, Wang H, Fuentes-Fernandez EM, Teat SJ, Chen F, Hall G, Chabal YJ, Li J (2016) Highly
efficient luminescentmetal–organic framework for the simultaneous detection and removal of
heavy metals from water. ACS Appl Mater Interfaces 8(44):30294–30303
Sakthivel S, Kisch H (2003) Daylight photocatalysis by carbon-modified titanium dioxide. Angew
Chem Int Ed 42(40):4908–4911
Saleem H, Rafique U, Davies RP (2016) Investigations on post-synthetically modified UiO-66-NH2
for the adsorptive removal of heavy metal ions from aqueous solution. Microporous Mesoporous
Mater 221:238–244
Sharifi S, Behzadi S, Laurent S, Laird Forrest M, Stroeve P, Mahmoudi M (2012) Toxicity of
nanomaterials. Chem Soc Rev 41(6):2323–2343
Shipley HJ, Yean S, Kan AT, Tomson MB (2009) Adsorption of arsenic to magnetite nanoparticles:
effect of particle concentration, pH, ionic strength, and temperature. Environ Toxicol Chem: Int
J 28(3):509–515
Song W, Grassian VH, Larsen SC (2005) High yield method for nanocrystalline zeolite synthesis.
Chem Commun 23:2951–2953
Sun Z, Yan Z, Yao J, Beitler E, Zhu Y, Tour JM (2010) Growth of graphene from solid carbon
sources. Nature 468(7323):549
Szabó T, Németh J, Dékány I (2003) Zinc oxide nanoparticles incorporated in ultrathin layer silicate
films and their photocatalytic properties. Colloids Surf A 230(1–3):23–35
Tesh SJ, Scott TB (2014) Nano-composites for water remediation: a review. Adv Mater
26(35):6056–6068
Upadhyayula VKK, Deng S, Mitchell MC, Smith GB (2009) Application of carbon nanotube
technology for removal of contaminants in drinking water: a review. Sci Total Environ 408(1):1–13
Van der Bruggen B, Vandecasteele C (2003) Removal of pollutants from surface water and groundwater by nanofiltration: overview of possible applications in the drinking water industry. Environ
Pollut 122(3):435–445
Van der Bruggen B, Everaert K, Wilms D, Vandecasteele C (2001) Application of nanofiltration for
removal of pesticides, nitrate and hardness from ground water: rejection properties and economic
evaluation. J Membr Sci 193(2):239–248
Vasudevan S, Lakshmi J (2012) The adsorption of phosphate by graphene from aqueous solution.
Rsc Advances 2(12):5234–5242
Verma R, Dwivedi P (2013) Heavy metal water pollution-a case study. Recent Res Sci Technol 5(5)
Warheit DB, Webb TR, Sayes CM, Colvin VL, Reed KL (2006) Pulmonary instillation studies with
nanoscale TiO 2 rods and dots in rats: toxicity is not dependent upon particle size and surface
area. Toxicol Sci 91(1):227–236
Wang C-B, Zhang W-X (1997) Synthesizing nanoscale iron particles for rapid and complete
dechlorination of TCE and PCBs. Environ Sci Technol 31(7):2154–2156
White BR, Stackhouse BT, Holcombe JA (2009) Magnetic γ-Fe 2 O 3 nanoparticles coated with polyl-cysteine for chelation of As (III), Cu (II), Cd (II), Ni (II), Pb (II) and Zn (II). J Hazard Mater
161(2–3):848–853
Xu X, Bao Y, Song C, Yang W, Liu J, Lin L (2004) Microwave-assisted hydrothermal synthesis of
hydroxy-sodalite zeolite membrane. Microporous Mesoporous Mater 75(3):173–181
Xu P, Zeng GM, Huang DL, Feng CL, Shuang H, Zhao MH, Lai C et al (2012) Use of iron oxide
nanomaterials in wastewater treatment: a review. Sci Total Environ 424:1–10
