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基于瓜尔胶 Kondagogu 的等离子体改性纳米纤维及其在纳米银、金和铂收集方面的应用。

Plasma modified nanofibres based on gum kondagogu and their use for collection of nanoparticulate silver, gold and platinum.

机构信息

Department of Nanomaterials in Natural Sciences, Institute for Nanomaterials, Advanced Technologies and Innovation, Technical University of Liberec, Studentská 1402/2, 460 08 Liberec, Czech Republic.

Department of Nanomaterials in Natural Sciences, Institute for Nanomaterials, Advanced Technologies and Innovation, Technical University of Liberec, Studentská 1402/2, 460 08 Liberec, Czech Republic.

出版信息

Carbohydr Polym. 2015 May 5;121:468-76. doi: 10.1016/j.carbpol.2014.11.074. Epub 2014 Dec 31.

Abstract

Electrospun nanofibre membranes from blend solutions of deacetylated gum kondagogu and polyvinyl alcohol of various weight proportions were prepared. The electrospun membrane was cross linked by heating at 150°C for 6h and later modified by methane plasma treatment. Membranes were successively used for the removal of nanoparticles (Ag, Au and Pt) from water. Pt nanoparticles with the smallest size (2.4 ± 0.7 nm) has a higher adsorption capacity (270.4 mg/g and 327.2mg/g) compared to Au and Ag nanoparticles with particle sizes 7.8 ± 2.3 nm and 10.5 ± 3.5 nm onto nanofibre membrane (NFM) and methane plasma treated membrane (P-NFM). The extraction efficiency of P-NFM for the removal of nanoparticles in water is higher compared to untreated membranes. The adsorption kinetics were evaluated by pseudo-first order and pseudo-second order models for the extraction of nanoparticles from water, with the pseudo-second order model providing a better fit. The reusability and regeneration of the P-NFM for consecutive adsorption was also established.

摘要

将去乙酰化瓜尔胶和聚乙烯醇以不同重量比例的混合溶液制备电纺纳米纤维膜。将电纺膜在 150°C 下加热 6 小时进行交联,然后用甲烷等离子体处理进行改性。膜成功地用于从水中去除纳米颗粒(Ag、Au 和 Pt)。与粒径为 7.8 ± 2.3nm 和 10.5 ± 3.5nm 的 Au 和 Ag 纳米颗粒相比,尺寸最小的 Pt 纳米颗粒(2.4 ± 0.7nm)在纳米纤维膜(NFM)和甲烷等离子体处理膜(P-NFM)上具有更高的吸附容量(270.4mg/g 和 327.2mg/g)。与未处理的膜相比,P-NFM 对水中纳米颗粒的萃取效率更高。通过准一级和准二级模型评估了纳米颗粒从水中萃取的吸附动力学,准二级模型提供了更好的拟合。还建立了 P-NFM 的可重复使用性和连续吸附的再生性。

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