Biosorption of Ag+, Cu٢+ and Fe٣+ by Gellan gum

Other Title(s)

ادمصاص كاتيونات الفضة و النحاسيك و الحديديك بواسطة صمغ الجيلان

Joint Authors

Hifnawi, Hifnawi Taha
al-Sadani, Sayyid Sulayman
Labib, Salah al-Din Muhammad
Uthman, Sarah al-Sayyid

Source

Zagazig Journal for Agricultural Researches

Issue

Vol. 44, Issue 5 (31 Oct. 2017), pp.1809-1817, 9 p.

Publisher

Zagazig University Faculty of Agriculture

Publication Date

2017-10-31

Country of Publication

Egypt

No. of Pages

9

Main Subjects

Chemistry

Abstract EN

The biosorption behaviors and mechanisms for Ag+, Cu٢+and Fe٣+ by a novel exopolysaccharide (gellan) from Sphingomonas paucimobilis have been studied in this paper.

The influences of gellan concentration, solution pH, desorption study and ionic strength on adsorption property were investigated.

The gellan showed strong biosorption capability, up to ١٦٩.١٥ mg/g of Ag+, ٢١٦.٠٩ mg/g of Cu٢+ and ٨٤.٤٧ mg/g of Fe٣+, respectively.

Infrared spectrometry analysis demonstrated that the groups of O—H, C=O, C—O—C and CH٢ of the gellan which involved in metal biosorption process were the main functional groups for binding metal ions.

Solvent of ٠.١N Sulphuric acid showed higher desorption of Ag+ (٩٤%), Cu٢+ (٩٠%), Fe٣+ (٨٦%) and adsorption-desorption process can be continued till seven cycles efficiently.

American Psychological Association (APA)

Uthman, Sarah al-Sayyid& al-Sadani, Sayyid Sulayman& Labib, Salah al-Din Muhammad& Hifnawi, Hifnawi Taha. 2017. Biosorption of Ag+, Cu٢+ and Fe٣+ by Gellan gum. Zagazig Journal for Agricultural Researches،Vol. 44, no. 5, pp.1809-1817.
https://search.emarefa.net/detail/BIM-854148

Modern Language Association (MLA)

al-Sadani, Sayyid Sulayman…[et al.]. Biosorption of Ag+, Cu٢+ and Fe٣+ by Gellan gum. Zagazig Journal for Agricultural Researches Vol. 44, no. 5 (2017), pp.1809-1817.
https://search.emarefa.net/detail/BIM-854148

American Medical Association (AMA)

Uthman, Sarah al-Sayyid& al-Sadani, Sayyid Sulayman& Labib, Salah al-Din Muhammad& Hifnawi, Hifnawi Taha. Biosorption of Ag+, Cu٢+ and Fe٣+ by Gellan gum. Zagazig Journal for Agricultural Researches. 2017. Vol. 44, no. 5, pp.1809-1817.
https://search.emarefa.net/detail/BIM-854148

Data Type

Journal Articles

Language

English

Record ID

BIM-854148