首页> 外文期刊>Chemical engineering journal >Preparation and characterization of thiol- and amino-functionalized polysilsesquioxane coated poly(p-phenylenetherephthal amide) fibers and their adsorption properties towards Hg(II)
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Preparation and characterization of thiol- and amino-functionalized polysilsesquioxane coated poly(p-phenylenetherephthal amide) fibers and their adsorption properties towards Hg(II)

机译:硫醇和氨基官能化多晶硅喹甲酸涂层聚(对苯脑终酰胺)纤维的制备及表征及其对HG(II)的吸附性能

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Two types of fibrous adsorbents, thiol- and amino- functionalized polysilsesquioxane coated poly(p-phenylenetherephthal amide) (PPTA) fibers (PPTA-PAPSQ and PPTA-PMPSQ), were prepared via the in situ condensations with aminopropyltriethoxysilane (APTES) and mercaptopropyltriethoxysilane (MPTES) on the surface of PPTA fibers, respectively. Their structures were characterized by FTIR, FE-SEM, XPS, XRD, TG, Elemental analysis, and pore structure analysis. The effect of the ratio of reactants on the structures of these two modified fibers was investigated. The results of nitrogen adsorption-desorption isotherms revealed that the polysilsesquioxane coating on the surface of PPTA-PMPSQ samples exhibited open meso- or macroporous features, while those on the surface of PPTA-PAPSQ samples formed dense gel structures. Moreover, Hg (II) was chosen as a representative to evaluate the adsorption properties of PPTA-PAPSQand PPTA-PMPSQ samples. The results showed that the adsorption processes of Hg(II) followed well pseudo-second-order model onto the two series adsorbents. The Langmuir was the better-fit model to predict the experimental data. The theoretical saturation adsorption capacities of polysilsesquioxanes coated on the PPTA-PAPSQ and PPTA-PMPSQ adsorbents can reach 3.52-10.64 mmol g(-1) and 7.43-10.22, mmol g(-1), respectively. The result showed that PPTA-PAPSQ and PPTA-PMPSQ adsorbents can selectively adsorb Hg(II) from binary component metal ion systems. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过与氨基丙基三乙氧基硅烷(Aptes)和巯基丙基三乙氧基硅烷(巯基丙基三乙氧基硅烷(巯基丙基三乙氧基硅烷(分别在PPTA纤维表面上的MPTES。它们的结构是通过FTIR,FE-SEM,XPS,XRD,TG,元素分析和孔隙结构分析的特征。研究了反应物比率对这两个改性纤维结构的影响。氮吸附 - 解吸等温物的结果表明,PPTA-PMPSQ样品表面上的多晶硅辛硅氧烷涂层表现出开放的中间或大孔特征,而PPTA-PASPQ样品表面上的致密凝胶结构形成。此外,选择HG(II)作为代表,以评估PPTA-PAPPASQAND PPTA-PMPSQ样品的吸附性能。结果表明,HG(II)的吸附过程沿着伪二阶模型井井用次序列的模型。 Langmuir是更好的模型来预测实验数据。 PPTA-PAPSQ和PPTA-PMPSQ吸附剂上涂覆的多晶硅淀粉的理论饱和度吸附能力分别可以达到3.52-10.64mmol G(-1)和7.43-10.22,Mmol G(-1)。结果表明,PPTA-PAPSQ和PPTA-PMPSQ吸附剂可以从二元组分金属离子系统中选择性地吸附HG(II)。 (c)2017 Elsevier B.v.保留所有权利。

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