Adsorption Science & Technology2020,Vol.38Issue(9/10) :19.DOI:10.1177/0263617420947495

Removal of caffeine from aqueous solution by green approach using Ficus Benjamina zero-valent iron/copper nanoparticles

Hossam Mohammed Abdel-Aziz Rabie Saad Farag Soha Ali Abdel-Gawad
Adsorption Science & Technology2020,Vol.38Issue(9/10) :19.DOI:10.1177/0263617420947495

Removal of caffeine from aqueous solution by green approach using Ficus Benjamina zero-valent iron/copper nanoparticles

Hossam Mohammed Abdel-Aziz 1Rabie Saad Farag 2Soha Ali Abdel-Gawad3
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作者信息

  • 1. Chemical Industries Development (CID) Company, Giza, Egypt
  • 2. Faculty of Science, Chemistry Department, Al-Azhar University, Cairo, Egypt
  • 3. Faculty of Science, Chemistry department, Cairo University, Giza, Egypt
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Abstract

Green synthesis approach was successful used extract was successful in preparing bimetallic zero-valent Iron/Copper nanoparticles [FB-nZVFe/Cu]. Scanning Electron Microscope [SEM], Fourier Transform Infrared Spectroscopy [FTIR], and Dispersive X-ray Spectroscopy [EDX] showing the synthesizing of FB-nZVFe/Cu. The removal efficiency of Caffeine [5mg L~(-1)] reached 86% under the conditions [0.2 g L -1, 45min, and pH 5]. The adsorption data are more appropriate by the Langmuir model [R~2=0.9987] with q_(max)=34.34mg g~(-1). Kinetic results showed that Caffeine uptake is following pseudo-second-order. Langmuir and pseudo-second-order are more appropriate in linear and nonlinear models. Overall, FB-Fe/Cu is a committed green substance for removal Caffeine from aqueous solutions. Functional parameters affect investigated using the Linear regression analysis, we found them to account for over 98% of the variables affecting the removal procedure.

Key words

Caffeine/bimetallic/nZVFe/Cu/Ficus Benjamina/green synthesized/linear and non-linear models

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出版年

2020
Adsorption Science & Technology

Adsorption Science & Technology

SCI
ISSN:0263-6174
被引量5
参考文献量51
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