Repository of Research and Investigative Information

Repository of Research and Investigative Information

Shahid Sadoughi University of Medical Sciences

Cadmium removal from aqueous solution by green synthesis iron oxide nanoparticles with tangerine peel extract

(2015) Cadmium removal from aqueous solution by green synthesis iron oxide nanoparticles with tangerine peel extract. Journal of Environmental Health Science and Engineering. p. 7. ISSN 2052-336X

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Abstract

Background: The adsorption process by metal oxide nanoparticles has been investigated an effective agent for removing organic and inorganic contaminants from water and wastewater. In this study, iron oxide nanoparticles were synthesized in the presence of tangerine peel extract as adsorbent for cadmium ions removal from contaminated solution. Iron oxide nanoparticles prepared by co-precipitation method and tangerine peel extract was used to prevent accumulation and reduce the diameter of the particles. Effect of various parameters such as contact time, pH, metal concentration and adsorbent dosage was determined on the removal efficiency. Results: The different concentrations of tangerine peel had an impact on the size of nanoparticles. As, increasing the concentration of tangerine peel extract from 2 to 6 the average size of synthesized iron oxide nanoparticles decreased 200 nm to 50 nm. The maximum removal of cadmium ions (90 ) occurred at pH of 4 and adsorbent dose of 0.4 g/100 ml. Adsorption of cadmium ions by synthesized iron oxide nanoparticles followed Freundlich adsorption model and pseudo-second-order equation. Conclusion: The cadmium ions are usually soluble in acidic pH and the maximum removal of cadmium by green synthesis iron oxide nanoparticles was obtained in the pH of 4, so these nanoparticles can be a good adsorbent for the removal of cadmium from wastewater.

Item Type: Article
Keywords: Iron oxide nanoparticles Cadmium removal Tangerine peel extract heavy-metal ions waste-water electrocoagulation process magnetic nanoparticles performance evaluation chromium vi adsorption equilibrium starch copper Engineering Environmental Sciences & Ecology
Page Range: p. 7
Journal or Publication Title: Journal of Environmental Health Science and Engineering
Journal Index: WoS
Volume: 13
Identification Number: https://doi.org/10.1186/s40201-015-0237-4
ISSN: 2052-336X
Depositing User: Mr mahdi sharifi
URI: http://eprints.ssu.ac.ir/id/eprint/29368

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