Literature DB >> 21516992

Removal of phosphate by Fe-coordinated amino-functionalized 3D mesoporous silicates hybrid materials.

Jianda Zhang1, Zhemin Shen, Zhijian Mei, Shanping Li, Wenhua Wang.   

Abstract

Phosphate removal from aqueous waste streams is an important approach to control the eutrophication downstream bodies of water. A Fe(II) coordinated amino-functionalized silicate adsorbent for phosphate adsorption was synthesized by a post-grafting and metal cation incorporation process. The surface structure of the adsorbent was characterized by X-ray diffraction, N2 adsoropion/desoprotion technique, and Fourier transform infrared spectroscopy. The experimental results showed that the adsorption equilibrium data were well fitted to the Langmuir equation. The maximum adsorption capacity of the modified silicate material was 51.8 mg/g. The kinetic data from the adsorption of phosphate were fitted to pseudo second-order model. The phosphate adsorption was highly pH dependent and the relatively high removal of phosphate fell within the pH range 3.0-6.0. The coexistence of other anions in solutions has an adverse effect on phosphate adsorption; a decrease in adsorption capacity followed the order of exogenous anions: F- > SO4(2-) > NO3- > Cl-. In addition, the adsorbed phosphate could be desorbed by NaOH solutions. This silicate adsorbent with a large adsorption capacity and relatively high selectivity could be utilized for the removal of phosphate from aqueous waste streams or in aquatic environment.

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Year:  2011        PMID: 21516992     DOI: 10.1016/s1001-0742(10)60393-2

Source DB:  PubMed          Journal:  J Environ Sci (China)        ISSN: 1001-0742            Impact factor:   5.565


  3 in total

1.  Nanoporous sorbent material as an oral phosphate binder and for aqueous phosphate, chromate, and arsenate removal.

Authors:  Thanapon Sangvanich; Worapol Ngamcherdtrakul; Richard Lee; Jingga Morry; David Castro; Glen E Fryxell; Wassana Yantasee
Journal:  J Nanomed Nanotechnol       Date:  2014

2.  Equilibrium and kinetics of adsorption of phosphate onto iron-doped activated carbon.

Authors:  Zhengfang Wang; Er Nie; Jihua Li; Mo Yang; Yongjun Zhao; Xingzhang Luo; Zheng Zheng
Journal:  Environ Sci Pollut Res Int       Date:  2012-02-22       Impact factor: 4.223

3.  Adsorptive Removal of Phosphate from Aqueous Solutions Using Low-Cost Volcanic Rocks: Kinetics and Equilibrium Approaches.

Authors:  Dereje Tadesse Mekonnen; Esayas Alemayehu; Bernd Lennartz
Journal:  Materials (Basel)       Date:  2021-03-09       Impact factor: 3.623

  3 in total

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