Mahmoud ME, Abdelwahab MS, Abdou AEH (2016a) Enhanced removal of lead and cadmium
from water by Fe3O4-cross linked-O-phenylenediamine nano-composite. Sep Sci Technol
51:237–247
Mahmoud ME, Fekry NA, Latif MMA (2016b) Nanocomposites of nanosilica immobilized
nanopolyaniline and crosslinked nanopolyaniline for the removal of heavy metal. Chem Eng J
304:679–691
Martin S, Griswold W (2009) Human health effects of heavy metals. Environ Sci Technol Briefs
Citiz 15:1–6
Massalimov IA, Yasova RR, Musavirova LR et al (2014) Use of micrometer hematite particles and
nanodispersed Goethite as sorbent for heavy metals. Russ J Appl Chem 87:1456–1463
Mishra AK, Ramaprabhu S (2010) Magnetite decorated multi-walled carbon nanotube based
supercapacitor for arsenic removal and desalination of seawater. J Phys Chem 6:2583–2590
Miyazak T, Ishikawa K, Shiroski Y et al (2013) Organic inorganic composites designed for
biomedical applications. Biol Pharm Bull 11:1670–1675
Musico YLF, Santos CM, Dalida MLP (2013) Improved removal of lead (II) from water using a
polymer based graphene oxide nanocomposite. J Mater Chem 1:3789–3796
Nasirimoghaddam S, Zeinali S, Sabbaghi S (2015) Chitosan coated magnetic nanoparticles as nanoadsorbent for efficient removal of mercury contents from industrial aqueous and oily samples. J
Ind Eng Chem 27:79–87
Ojea-Jimenez I, Loopez X, Arbiol J et al (2012) Citrate-coated gold nanoparticles as smart
scavengers for mercury (II) removal from polluted waters. ACS Nano 6:2253–2260
Pan J, Plant JA, Voulvoulis N et al (2010) Cadmium levels in Europe: implications for human
health. Environ Geochem Health 32:1–12
Paul DR, Robeson LM (2008) Polymer nanotechnology: nanocomposites. Polymer 49:3187–3104
Paul BT, Yedjou CG, Patolla AK et al (2012) Heavy metal toxicity and the environment. EXS
101:133–164
Peng W, Li H, Liu Y et al (2017) A review on heavy metal ions adsorption from water by graphene
oxide and its composites. J Mol Liq 230:496–504
Peyravi M, Jahanshahi M, Rahimpour A et al (2014) Novel thin film nanocomposite membranes
incorporated with functionalized TiO 2 nanoparticles for organic solvent nanofiltration. Chem
Eng J 241:155–166
Rafiq Z, Nazir R, Durr-e-Shahwar N et al (2014) Utilization of magnesium and zinc oxide nanoadsorbents as potential materials for treatment of copper electroplating industry wastewater. J
Environ Chem Eng 2:642–651
Rahman MM, Ng JC, Naidu R (2009) Chronic exposure of arsenic via drinking water and its
adverse health impacts on humans. Environ Geochem Health 31:189–200
Ruparelia JP, Duttagupta SP, Chatterjee AK, Mukherji S (2008) Potential of carbon nanomaterials
for removal of heavy metals from water. Desalination 232:145–156
Saharan P, Chaudhary GR, Mehta SK et al (2014) Removal of water contaminants by iron oxide
nanomaterials. J Nanosci Nanotechnol 14:627–643
Salam MA, Makki MSI, Abdelaal MYA (2009) Preparation and characterization of multi-walled
carbon nanotubes/chitosan nanocomposite and its application for the removal of heavy metals
from aqueous solution. J Alloys Compd 509:2582–2587
Sarı A, Tuzen M (2009) Kinetic and equilibrium studies of biosorption of Pb (II) and cd (II) from
aqueous solution by macrofungus (Amanita rubescens) biomass. J Hazard Mater
164:1004–1011
Say R, Denizli A, Yakup Arıca M (2001) Biosorption of cadmium (II), lead (II) and copper (II) with
the filamentous fungus Phanerochaete chrysosporium. Bioresour Technol 76:67–70
Shan C, Ma Z, Tong M et al (2015) Removal of hg(II) by poly(1-vinylimidazole)-grafted Fe3O4
@SiO2 magnetic nanoparticles. Water Res 69:252–260
Sheet I, Kabbani A, Holail H (2014) Removal of heavy metals using nanostructured graphite oxide,
silica nanoparticles and silica/graphite oxide composite. Energy Procedia 50(130–138):20
162
N. Dhiman et al.
from water by Fe3O4-cross linked-O-phenylenediamine nano-composite. Sep Sci Technol
51:237–247
Mahmoud ME, Fekry NA, Latif MMA (2016b) Nanocomposites of nanosilica immobilized
nanopolyaniline and crosslinked nanopolyaniline for the removal of heavy metal. Chem Eng J
304:679–691
Martin S, Griswold W (2009) Human health effects of heavy metals. Environ Sci Technol Briefs
Citiz 15:1–6
Massalimov IA, Yasova RR, Musavirova LR et al (2014) Use of micrometer hematite particles and
nanodispersed Goethite as sorbent for heavy metals. Russ J Appl Chem 87:1456–1463
Mishra AK, Ramaprabhu S (2010) Magnetite decorated multi-walled carbon nanotube based
supercapacitor for arsenic removal and desalination of seawater. J Phys Chem 6:2583–2590
Miyazak T, Ishikawa K, Shiroski Y et al (2013) Organic inorganic composites designed for
biomedical applications. Biol Pharm Bull 11:1670–1675
Musico YLF, Santos CM, Dalida MLP (2013) Improved removal of lead (II) from water using a
polymer based graphene oxide nanocomposite. J Mater Chem 1:3789–3796
Nasirimoghaddam S, Zeinali S, Sabbaghi S (2015) Chitosan coated magnetic nanoparticles as nanoadsorbent for efficient removal of mercury contents from industrial aqueous and oily samples. J
Ind Eng Chem 27:79–87
Ojea-Jimenez I, Loopez X, Arbiol J et al (2012) Citrate-coated gold nanoparticles as smart
scavengers for mercury (II) removal from polluted waters. ACS Nano 6:2253–2260
Pan J, Plant JA, Voulvoulis N et al (2010) Cadmium levels in Europe: implications for human
health. Environ Geochem Health 32:1–12
Paul DR, Robeson LM (2008) Polymer nanotechnology: nanocomposites. Polymer 49:3187–3104
Paul BT, Yedjou CG, Patolla AK et al (2012) Heavy metal toxicity and the environment. EXS
101:133–164
Peng W, Li H, Liu Y et al (2017) A review on heavy metal ions adsorption from water by graphene
oxide and its composites. J Mol Liq 230:496–504
Peyravi M, Jahanshahi M, Rahimpour A et al (2014) Novel thin film nanocomposite membranes
incorporated with functionalized TiO 2 nanoparticles for organic solvent nanofiltration. Chem
Eng J 241:155–166
Rafiq Z, Nazir R, Durr-e-Shahwar N et al (2014) Utilization of magnesium and zinc oxide nanoadsorbents as potential materials for treatment of copper electroplating industry wastewater. J
Environ Chem Eng 2:642–651
Rahman MM, Ng JC, Naidu R (2009) Chronic exposure of arsenic via drinking water and its
adverse health impacts on humans. Environ Geochem Health 31:189–200
Ruparelia JP, Duttagupta SP, Chatterjee AK, Mukherji S (2008) Potential of carbon nanomaterials
for removal of heavy metals from water. Desalination 232:145–156
Saharan P, Chaudhary GR, Mehta SK et al (2014) Removal of water contaminants by iron oxide
nanomaterials. J Nanosci Nanotechnol 14:627–643
Salam MA, Makki MSI, Abdelaal MYA (2009) Preparation and characterization of multi-walled
carbon nanotubes/chitosan nanocomposite and its application for the removal of heavy metals
from aqueous solution. J Alloys Compd 509:2582–2587
Sarı A, Tuzen M (2009) Kinetic and equilibrium studies of biosorption of Pb (II) and cd (II) from
aqueous solution by macrofungus (Amanita rubescens) biomass. J Hazard Mater
164:1004–1011
Say R, Denizli A, Yakup Arıca M (2001) Biosorption of cadmium (II), lead (II) and copper (II) with
the filamentous fungus Phanerochaete chrysosporium. Bioresour Technol 76:67–70
Shan C, Ma Z, Tong M et al (2015) Removal of hg(II) by poly(1-vinylimidazole)-grafted Fe3O4
@SiO2 magnetic nanoparticles. Water Res 69:252–260
Sheet I, Kabbani A, Holail H (2014) Removal of heavy metals using nanostructured graphite oxide,
silica nanoparticles and silica/graphite oxide composite. Energy Procedia 50(130–138):20
162
N. Dhiman et al.
