Enhancement of the chromium removal behavior of Moringa oleifera activated carbon by chitosan and iron oxide nanoparticles from water

2021 ◽  
Vol 251 ◽  
pp. 117085
Author(s):  
Farahnaz Bahador ◽  
Rauf Foroutan ◽  
Hossein Esmaeili ◽  
Bahman Ramavandi
2017 ◽  
Vol 39 (22) ◽  
pp. 2926-2936 ◽  
Author(s):  
Carole Silveira ◽  
Quelen Letícia Shimabuku ◽  
Marcela Fernandes Silva ◽  
Rosângela Bergamasco

2019 ◽  
Vol Volume 14 ◽  
pp. 8105-8119 ◽  
Author(s):  
Antony V Samrot ◽  
Chamarthy Sai Sahithya ◽  
Jenifer Selvarani A ◽  
Senthilkumar Pachiyappan ◽  
Suresh Kumar S

2021 ◽  
Vol 45 (1) ◽  
Author(s):  
M. M. Tawfik ◽  
Magda H. Mohamed ◽  
Mervat Sh. Sadak ◽  
Alice T. Thalooth

Abstract Background Using of nanoparticles in various aspects of life including agriculture, medicine and industry is very crucial. One of the important source for Fe nutrition in plants is Iron oxide nanoparticles (Fe3O4NPs) due to its efficiency in releasing under different pH range. Thus, in the Model Farm of National Research Centre Egypt at El Tour South Sinai, a field experiment was carried out, to study the effect of different concentration of Fe3O4NPs (0, 20, 40, 60 ppm) on the physiological parameters and the nutritive value of Moringa under saline condition. Results The obtained results indicate that foliar spraying of Fe3O4NPs significantly promote growth (plant height, branches leaves number per plant, leaf area, stem diameter and biomass). Foliar treatment also increased photosynthetic pigments (chlo.a, chlo b, chlo a/b and carotenoids) and indole acetic acid (IAA) contents comparing with control. Hydrogen peroxide and lipid peroxidation contents of Moringa oleifera leaves were decreased significantly as compared with control plant. The maximum activities of antioxidant enzymes Peroxidase (POX), poly phenol oxidase (PPO), super oxide dismutase (SOD) and nitrate reductase (NR) were observed in plants treated with 40 ppm. Different concentrations of Fe3O4NPs increased significantly crude protein, crude fiber and ash percentages as well as, some nutrient contents of moringa leaves (N, P, K and K/Na) compared with untreated control plants, meanwhile decreased Na contents. Conclusion Treatment of Moringa oleifera plant with Fe3O4NPs at different concentrations greatly decrease the harmful effect of salinity on growth by its promotive role on different studied biochemical and physiological aspects.


2016 ◽  
Vol 18 (2) ◽  
pp. 259-268 ◽  

<p>This paper reports on the fabrication, characterization and testing of iron oxide nanoparticles &ndash; powdered activated carbon (PAC) composites for water treatment and PAC regeneration by Fenton reactions. Different wet impregnation procedures and iron loadings were assessed in terms of organic micropollutant adsorption, by using the pharmaceutical diclofenac (DCF) as model compound. The preparation of a ferrihydrite-impregnated PAC with low iron content (~40.7 mg<sub>Fe</sub>/g<sub>PAC</sub>) and high BET surface area (1037 m<sup>2 </sup>g<sup>-1</sup>) was found to be the optimum, exhibiting excellent DCF adsorption capacity, similar to that of the original PAC (203 mg<sub>DCF</sub>/g<sub>PAC/Fe</sub>), with the adsorption isotherm satisfactorily fitted by both the Freundlich and Langmuir models. The regeneration of the ferrihydrite-PAC (Fe/PAC) indicated that the presence of iron-oxide nanoparticles is important for achieving a high regeneration efficiency by hydrogen peroxide, even at neutral pH. However, the solution pH had a significant effect on DCF uptake, being greater at acidic pH after the regeneration of the composite. Ongoing R&amp;D is aimed at material optimization and testing in a novel hybrid process scheme developed in author&rsquo;s laboratory, involving a continuous Fe/PAC &ndash; Fenton process in conjunction with a low pressure membrane separation process.&nbsp;</p>


2019 ◽  
Vol 27 (6) ◽  
pp. 6088-6102 ◽  
Author(s):  
Carole Silveira ◽  
Quelen Letícia Shimabuku-Biadola ◽  
Marcela Fernandes Silva ◽  
Marcelo Fernandes Vieira ◽  
Rosângela Bergamasco

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