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首页> 外文期刊>Reactive & Functional Polymers >Evaluation of hyper-cross-linked polymeric sorbents (Macronet MN200 and MN300) on dye (Acid red 14) removal process
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Evaluation of hyper-cross-linked polymeric sorbents (Macronet MN200 and MN300) on dye (Acid red 14) removal process

机译:评估染料(酸性红14)去除过程中的超交联聚合物吸附剂(Macronet MN200和MN300)

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摘要

Polymeric supports are presented as an alternative to granular activated carbon (GAC) for organic contaminants removal from waste waters from industrial processes. The present work describes the sorption of an azo dye (Acid red 14) from aqueous solution onto Macronet polymeric sorbent MN200 and MN300. Batch experiments were performed to determine loading isotherms and loading rates at different pH. The behaviour of a non-functionalized Macronet support MN200 was compared with Macronet MN300 containing tertiary amine groups. The loadings achieved were 65 g kg~(-1) for MN200 and 108 g kg~(-1) for MN300. The influence of the acidity on dye removal was notable; the decrease of pH provides an increase on the loading around 100% of the value reported at neutral pH. Equilibrium data were modelled with Langmuir, Freundlich and Redlich Peterson isotherms. The hyper-cross-linked polymers extract Acid red 14, via a complex sorption process depending on the aqueous feed composition and depending on the nature of the sorbent evaluated. The Redlich-Peterson isotherm provides a better description of sorption data for both resins. Kinetic experiments were carried out for both sorbents at different pH and azo dye concentrations. Three theoretical models (pseudo-first, pseudo-second-order reaction and the Elovich model) were used to describe the Acid red 14 sorption kinetics, and to determine the sorption rate constants by graphical and numerical analysis of the experimental data by using the proposed models. The study showed that sorption systems followed a pseudo-first-order reaction model although the pseudo-second-order reaction model provides a good description of the sorption process. Column experiments were performed in order to compare the dynamic behaviour of the sorbents and their capacity of regeneration. Non-functionalized MN200 resin showed excellent behaviour during the regeneration process. After 3 bed volumes the amount of Acid red 14 eluted was almost 100%.
机译:提出了聚合物载体作为颗粒状活性炭(GAC)的替代品,用于去除工业过程中的废水中的有机污染物。本工作描述了将偶氮染料(酸性红14)从水溶液中吸附到Macronet聚合物吸附剂MN200和MN300上。进行批处理实验以确定在不同pH下的等温负载线和负载率。将非功能化Macronet支持MN200的行为与包含叔胺基的Macronet MN300进行了比较。 MN200达到65 g kg〜(-1),MN300达到108 g kg〜(-1)。酸度对染料去除的影响是显着的。 pH的降低使负载增加,约为中性pH值的100%。平衡数据使用Langmuir,Freundlich和Redlich Peterson等温线建模。根据水性进料组成和所评估吸附剂的性质,超交联聚合物通过复杂的吸附过程提取酸性红14。 Redlich-Peterson等温线为两种树脂的吸附数据提供了更好的描述。在不同的pH和偶氮染料浓度下对两种吸附剂进行了动力学实验。三种理论模型(拟一阶,拟二阶反应和Elovich模型)用于描述酸性红14的吸附动​​力学,并通过对所提出的实验数据进行图形和数值分析来确定吸附速率常数。楷模。研究表明,吸附系统遵循伪一级反应模型,尽管伪二级反应模型很好地描述了吸附过程。进行柱实验以比较吸附剂的动态行为及其再生能力。未官能化的MN200树脂在再生过程中表现出优异的性能。在3个床体积后,酸性红14的洗脱量几乎为100%。

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