Removal of oil spills by novel developed amphiphilic chitosan-g-citronellal schiff base polymer

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作者
Ahmed Mohamed Omer
Basant Yossry Eweida
Tamer Mahmoud Tamer
Hesham M. A. Soliman
Safaa Mohamed Ali
Ahmed Amin Zaatot
Mohamed Samir Mohy-Eldin
机构
[1] City of Scientific Research and Technological Applications (SRTA-City),Polymer Materials Research Department, Advanced Technology and New Materials Research Institute (ATNMRI)
[2] New Borg El-Arab City,Modeling and Simulation Department, Advanced Technology and New Materials Research Institute
[3] City of Scientific Research and Technological Applications (SRTA-City),Nanotechnology and New Composite Materials Department Advanced Technology and New Materials Research Institute (ATNMRI)
[4] New Borg El-Arab City,Nucleic Acid Research Department, Genetic Engineering and Biotechnology Research Institute (GEBRI)
[5] City of Scientific Research and Technological Applications (SRTA-City),Chemical Engineering Department, Faculty of Engineering
[6] New Borg El-Arab City,undefined
[7] City for Scientific Research and Technological Applications (SRTA-City),undefined
[8] New Borg El-Arab,undefined
[9] Alexandria University,undefined
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摘要
A novel chitosan grafted citronellal (Ch-Cit) schiff base amphiphilic polymer was developed for the adsorptive removal of oil spills. The chemical structure was verified by FT-IR spectroscopy and 1H NMR spectrometer, while the morphological changes and surface area were investigated by SEM and BET analysis tools. The amphiphilic character of Ch-Cit schiff base was controlled through variation of the grafting percentage (G%) of citronellal from 11 to 61%. Dramatic changes in the ion exchange capacity (IEC), solubility and water uptake profiles were established, while the oil adsorption capacity was founded in direct relation with the G (%) of citronellal. Operational conditions such as oil amount, adsorption time, adsorbent dose and agitation speed were investigated. The developed Ch-Cit schiff base exhibited a higher surface area (115.94 m2/g) compared to neat chitosan (57.78 m2/g). The oil adsorption capacity of the Ch-Cit schiff base was greatly improved by 166% and 120% for light crude and heavy crude oil, respectively. Finally, the adsorption process was optimized using response surface methodology (RSM).The results substantiate that the amphiphilic Ch-Cit schiff base could be efficiently applied as a low-cost oil-adsorbent for the removal of crude oil spills from sea-water surfaces.
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