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纳米纤维素及其磷酸化衍生物用于从工业废水中选择性吸附 Ag(+)、Cu(2+)和 Fe(3+)。

Nanocelluloses and their phosphorylated derivatives for selective adsorption of Ag(+), Cu(2+) and Fe(3+) from industrial effluents.

机构信息

Division of Materials Science, Luleå University of Technology, 97187 Luleå, Sweden.

University of Maribor, Institute for Engineering Materials and Design, Smetanova ul. 17, SI-2000 Maribor, Slovenia.

出版信息

J Hazard Mater. 2015 Aug 30;294:177-85. doi: 10.1016/j.jhazmat.2015.04.001. Epub 2015 Apr 3.

Abstract

The potential of nanoscaled cellulose and enzymatically phosphorylated derivatives as bio-adsorbents to remove metal ions (Ag(+), Cu(2+) and Fe(3+)) from model water and industrial effluents is demonstrated. Introduction of phosphate groups onto nanocelluloses significantly improved the metal sorption velocity and sorption capacity. The removal efficiency was considered to be driven by the high surface area of these nanomaterials as well as the nature and density of functional groups on the nanocellulose surface. Generally, in the solutions containing only single types of metal ions, the metal ion selectivity was in the order Ag(+)>Cu(2+)>Fe(3+), while in the case of mixtures of ions, the order changed to Ag(+)>Fe(3+)>Cu(2+), irrespective of the surface functionality of the nanocellulose. In the case of industrial effluent from the mirror making industry, 99% removal of Cu(2+) and Fe(3+) by phosphorylated nanocellulose was observed. The study showed that phosphorylated nanocelluloses are highly efficient biomaterials for scavenging multiple metal ions, simultaneously, from industrial effluents.

摘要

纳米纤维素及其酶磷酸化衍生物作为生物吸附剂,从模型水和工业废水中去除金属离子(Ag(+)、Cu(2+)和 Fe(3+))的潜力得到了证明。在纳米纤维素上引入磷酸基团显著提高了金属的吸附速度和吸附容量。去除效率被认为是由这些纳米材料的高表面积以及纳米纤维素表面官能团的性质和密度驱动的。一般来说,在只含有单一类型金属离子的溶液中,金属离子的选择性顺序为 Ag(+)>Cu(2+)>Fe(3+),而在离子混合物的情况下,顺序变为 Ag(+)>Fe(3+)>Cu(2+),与纳米纤维素的表面官能团无关。在来自镜子制造工业的工业废水中,观察到磷酸化纳米纤维素对 Cu(2+)和 Fe(3+)的去除率达到 99%。该研究表明,磷酸化纳米纤维素是一种从工业废水中同时高效去除多种金属离子的生物材料。

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