Integration between bacterial consortium and magnetite (Fe3O4) nanoparticles for the treatment of oily industrial wastewater

Author(s):  
Ebtesam El Bestawy ◽  
Basma Farg El-Shatby ◽  
Abdelazeem Saad Eltaweil
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Joanna Zembrzuska

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Brajesh Kumar ◽  
Kumari Smita ◽  
Luis Cumbal ◽  
Alexis Debut ◽  
Salome Galeas ◽  
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Hanmei Hu ◽  
Xinqing Ge ◽  
Chengliang Han ◽  
Difang Zhao

ChemInform ◽  
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Habib Firouzabadi ◽  
Nasser Iranpoor ◽  
Mohammad Gholinejad ◽  
Jafar Hoseini

2016 ◽  
Vol 420 ◽  
pp. 210-217 ◽  
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Ali Hossein Rezayan ◽  
Majid Mousavi ◽  
Somayyeh Kheirjou ◽  
Ghasem Amoabediny ◽  
Mehdi Shafiee Ardestani ◽  
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Arvind Pandey ◽  
Pratima R. Solanki

2018 ◽  
Vol 7 (2.19) ◽  
pp. 87
Author(s):  
D BALAJ ◽  
C SARALA RUBI ◽  
N G. RENGANATHAN

Attractive nanoparticles have been broadly considered on account of their potential applications as complexity operators in attractive reverberation imaging (MRI) of tumors, cell and DNA partition, attractively guided medication conveyance, tumor hyperthermia. Among the attractive oxides, magnetite nanoparticles are most appropriate because of their low danger and great attractive properties which may be used in drug delivery. Magnetite nanoparticles were synthesized using FeCl3 and FeSO4 as precursors and characterized for size and shape using non-contact AFM.  The formation of magnetite was confirmed by XRD pattern. The elemental composition of the obtained phase was determined using EDAX. In this work, we are aiming to develop drug loaded biopolymer Magnetite nanoparticles for biomedical application. Our main objective is to synthesize and characterize Magnetite (Fe3O4) nanoparticles.  


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