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首页> 外文期刊>Journal of Applied Polymer Science >Preparation and adsorption mechanism of polyvinyl alcohol/graphene oxide-sodium alginate nanocomposite hydrogel with high Pb(II) adsorption capacity
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Preparation and adsorption mechanism of polyvinyl alcohol/graphene oxide-sodium alginate nanocomposite hydrogel with high Pb(II) adsorption capacity

机译:具有高PB(II)吸附能力的聚乙烯醇/石墨烯氧化钠藻酸钠纳米复合水凝胶的制备及吸附机理

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摘要

A series of polyvinyl alcohol (PVA)/graphene oxide (GO)-sodium alginate (SA) nanocomposite hydrogel beads were prepared through in situ crosslinking for Pb2+ removal. It was found that PVA and SA molecules were intercalated into GO layers through hydrogen bonding interactions, leading to the destruction of orderly structure of GO, while GO uniformly distributed in PVA matrix. With increasing PVA solution concentration, the hydrogel beads became more regular, a large number of polygonal pores with thin walls and open pores formed, the average pore size decreased, and the dense network structure formed. Meanwhile, the permeability of the composite hydrogel decreased, leading to the decline of Pb2+ adsorption capacity of the composite hydrogel. With increasing GO content, the ballability of the hydrogel beads was weakened, the pore size increased, and relatively loose network structure formed, resulting in an increase in permeability and Pb2+ adsorption capacity of the hydrogel, reaching up to 279.43 mg g(-1). Moreover, the composite hydrogel presented relatively good reusability for Pb2+ removal. The adsorption mechanism was explored and showed that the adsorption system of the composite hydrogel belonged to the second-order kinetic model and fitted Langmuir adsorption isotherm model for Pb2+ removal, which might be mono-layer chemical adsorption. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47318.
机译:通过原位交联制备一系列聚乙烯醇(PVA)/石墨烯氧化物(GO) - 藻酸钠(SA)纳米复合水珠珠,用于PB2 +去除。发现PVA和SA分子通过氢键相互作用嵌入到GO层中,导致持续的有序结构的破坏,同时在PVA基质中均匀分布。随着PVA溶液浓度的增加,水凝胶珠粒变得更加规则,大量具有薄壁的多边形孔,形成薄孔,平均孔径降低,并且形成了致密的网络结构。同时,复合水凝胶的渗透率降低,导致复合水凝胶的PB2 +吸附能力的下降。随着GO含量的增加,水凝胶珠的可光滑削弱,孔径增加,形成了相对松散的网络结构,导致水凝胶的渗透性和PB2 +吸附能力增加,达到高达279.43mg(-1) 。此外,复合水凝胶对Pb2 +去除呈现了相对良好的可重用性。探索了吸附机理,并表明复合水凝胶的吸附系统属于二阶动力学模型,适用于PB2 +去除的朗米鲁鲁尔吸附等温模型,这可能是单层化学吸附。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47318。

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