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首页> 外文期刊>Chemical Science International Journal >Synthesis of β-Cyclodextrin-EpichlorohydrinNanospheres: Its Application for Removalof p-nitrophenol
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Synthesis of β-Cyclodextrin-EpichlorohydrinNanospheres: Its Application for Removalof p-nitrophenol

机译:β-环糊精-表氯醇纳米球的合成及其在对硝基苯酚去除中的应用

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The aim of this work is to investigate synthesis conditions of water insoluble β-cyclodextrin (β-CD) nanospheres that could be useful as an adsorbent to remove very low concentration of p -nitrophenol ( p -NP) from water. The effect of several parameters on β-CD polymer synthesis such as β-CD/epichlorohydrin (EPI) mole ratio, reaction temperature and NaOH concentration was investigated. The FTIR-ATR analysis confirmed the formation of β-CD polymer structure with the addition of EPI by preserving the basic β-CD structural units. To determine the optimal synthesis conditions, performances of the synthesized β-CD nanospheres were determined by measuring the adsorption efficiencies of p -NP. On the basis of these results, the optimal synthesis conditions of β-CD nanospheres were 65°C, 40% NaOH (w/w) concentration and β-CD/EPI=1/55 mole ratio. Langmuir and Freundlich isotherm models were fitted on experimental data. It was found that Langmuir model described best for adsorption of p -NP onto β-CD nanospheres. On the basis of the Langmuir analysis, the maximum adsorption capacities were determined to be 17.203 mg p -NP per gram of β-CD nanospheres. The β-CD nanospheres at predetermined optimum reaction conditions were also characterized by transmission electron microscopy (TEM), scanning electron microscopy (SEM) and Brunauer-Emmet-Teller (BET) analysis. The combination of results from SEM,TEM and BET indicated that the synthesized β-CD nanospheres have a porous and sponge-like structure and 1.54 m~(2)/g specific surface area.
机译:这项工作的目的是研究水不溶性β-环糊精(β-CD)纳米球的合成条件,该合成条件可用作从水中去除非常低浓度的对硝基苯酚(p -NP)的吸附剂。研究了β-CD/表氯醇(EPI)的摩尔比,反应温度和NaOH浓度等参数对β-CD聚合物合成的影响。 FTIR-ATR分析证实,通过保留基本的β-CD结构单元,可以在添加EPI的同时形成β-CD聚合物结构。为了确定最佳的合成条件,通过测量p -NP的吸附效率来确定合成的β-CD纳米球的性能。根据这些结果,β-CD纳米球的最佳合成条件为65℃,40%的NaOH(w / w)浓度和β-CD/ EPI = 1/55的摩尔比。 Langmuir和Freundlich等温线模型适合于实验数据。发现Langmuir模型最能描述p -NP在β-CD纳米球上的吸附。根据Langmuir分析,最大吸附容量被确定为每克β-CD纳米球17.203mg p -NP。还通过透射电子显微镜(TEM),扫描电子显微镜(SEM)和Brunauer-Emmet-Teller(BET)分析对在预定最佳反应条件下的β-CD纳米球进行了表征。 SEM,TEM和BET结果的结合表明,合成的β-CD纳米球具有多孔海绵状结构,比表面积为1.54 m〜(2)/ g。

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