简介概要

Removal of trivalent samarium from aqueous solutions by activated biochar derived from cactus fibres

来源期刊:Journal of Rare Earths2016年第1期

论文作者:Loukia Hadjittofi Styliana Charalambous Ioannis Pashalidis

文章页码:99 - 104

摘    要:The efficiency of activated biochar fibres obtained from Opuntia Ficus Indica regarding the sorption of trivalent samarium(Sm(III)) from aqueous solutions was investigated by batch experiments. The effect of various physicochemical parameters(e.g. p H, initial metal concentration, ionic strength, temperature and contact time) on the Sm(III) adsorption was studied and the surface species were characterized by FTIR spectroscopy prior to and after the lanthanide sorption. The experimental results showed that the activated biochar fibres possessed extraordinary sorption capacity for Sm(III) in acidic solutions(qmax=90 g/kg, p H 3.0) and near neutral solutions(qmax=350 g/kg, p H 6.5). This was attributed to the formation of samarium complexes with the surface carboxylic moieties, available in high density on the lamellar structures of the bio-sorbent.

详情信息展示

Removal of trivalent samarium from aqueous solutions by activated biochar derived from cactus fibres

Loukia Hadjittofi,Styliana Charalambous,Ioannis Pashalidis

Department of Chemistry, University of Cyprus

摘 要:The efficiency of activated biochar fibres obtained from Opuntia Ficus Indica regarding the sorption of trivalent samarium(Sm(III)) from aqueous solutions was investigated by batch experiments. The effect of various physicochemical parameters(e.g. p H, initial metal concentration, ionic strength, temperature and contact time) on the Sm(III) adsorption was studied and the surface species were characterized by FTIR spectroscopy prior to and after the lanthanide sorption. The experimental results showed that the activated biochar fibres possessed extraordinary sorption capacity for Sm(III) in acidic solutions(qmax=90 g/kg, p H 3.0) and near neutral solutions(qmax=350 g/kg, p H 6.5). This was attributed to the formation of samarium complexes with the surface carboxylic moieties, available in high density on the lamellar structures of the bio-sorbent.

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