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Resin screening for the removal of pyridine-derivatives from waste-water by solvent impregnated resin technology

机译:树脂浸渍树脂技术筛选废水中的吡啶衍生物

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摘要

The selective removal of pyridine derivatives by solvent impregnated resins has been studied. A solvent impregnated resin consists of a macro-porous particle that is impregnated with a solvent. This technology allows the use liquid-liquid extraction in fixed-bed operation, and prevents problems like entrainment and irreversible emulsification. 4-Cyanopyridine was chosen as model pyridine derivative, and 4-nonyl-phenol was used as solvent. The aim of this study was to select the most suitable resin for this application. While in the literature there are mainly two types of resins used, MPP and Amberlite XAD type, a comparative study has not yet been conducted. In this study, a series of resins were impregnated with the solvent and applied in sorption experiments to study on the effect of the resin properties on the capacity, selectivity and mass-transfer rates of the solvent impregnated resins. It was found that the capacity could be estimated accurately with the previously developed liquid-liquid extraction equilibrium model. Additionally, the selectivity was determined by the solvent properties, and hardly affected by the resin matrix. The mass-transfer rates were primarily determined the by particle diameter, whereas the effect of the porosity is small. On the basis of the results it was established that Amberlite XAD4 had the best combination of capacity, mass-transfer rate, mechanical strength, selectivity and pressure drop over a fixed-bed column and was therefore chosen for a more detailed study. The results showed that the breakthrough curve is broad due to mass-transfer limitations. The loading cycle of the column could be described with great accuracy using the mathematical model developed in this study. Regeneration of the column could be performed efficiently with a pH-swing using hydrochloric acid at a pH of 1. The fixed bed column was percolated with 7000 bed volumes of aqueous solutions varying in composition. No reduction in the capacity was observed which demonstrated that the SIR consisting of Amberlite XAD4 and 4-nonylphenol is highly stable.
机译:已经研究了通过溶剂浸渍的树脂选择性去除吡啶衍生物。浸渍有溶剂的树脂由浸渍有溶剂的大孔颗粒组成。该技术允许在固定床操作中使用液-液萃取,并防止夹带和不可逆乳化等问题。选择4-氰基吡啶作为模型吡啶衍生物,并使用4-壬基苯酚作为溶剂。这项研究的目的是为该应用选择最合适的树脂。虽然在文献中主要使用两种类型的树脂,MPP和Amberlite XAD类型,但尚未进行比较研究。在这项研究中,一系列树脂被溶剂浸渍,并用于吸附实验,以研究树脂性能对溶剂浸渍树脂的容量,选择性和传质速率的影响。已经发现,利用先前开发的液-液萃取平衡模型可以准确地估计容量。另外,选择性由溶剂性质决定,几乎不受树脂基质的影响。传质速率主要由粒径决定,而孔隙率的影响很小。根据结果​​,可以确定Amberlite XAD4在固定床色谱柱上具有容量,传质速率,机械强度,选择性和压降的最佳组合,因此被选择用于更详细的研究。结果表明,由于传质限制,穿透曲线较宽。使用本研究开发的数学模型可以非常准确地描述色谱柱的加载周期。该色谱柱的再生可通过使用pH为1的盐酸进行pH振荡而有效地进行。固定床色谱柱用7000床体积的不同组成的水溶液渗透。没有观察到容量降低,这表明由Amberlite XAD4和4-壬基苯酚组成的SIR是高度稳定的。

著录项

  • 来源
    《Reactive & Functional Polymers》 |2013年第3期|595-605|共11页
  • 作者单位

    Eindhoven University of Technology, Process Systems Engineering Croup, Department of Chemical Engineering and Chemistry, PO Box 513. 5600 MB Eindhoven, The Netherlands;

    Eindhoven University of Technology, Process Systems Engineering Croup, Department of Chemical Engineering and Chemistry, PO Box 513. 5600 MB Eindhoven, The Netherlands;

    Eindhoven University of Technology, Process Systems Engineering Croup, Department of Chemical Engineering and Chemistry, PO Box 513. 5600 MB Eindhoven, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solvent impregnated resin; 4-cyanopyridine; 4-nonylphenol; resin screening; mass-transfer; equilibrium extraction;

    机译:溶剂浸渍树脂;4-氰基吡啶;4-壬基苯酚;树脂筛选;传质平衡提取;

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