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Batch and Continuous Flow Adsorption of Phenolic Compounds from Olive Mill Wastewater: A Comparison between Nonionic and Ion Exchange Resins

机译:橄榄磨坊废水中酚类化合物的分批和连续流动吸附:非离子和离子交换树脂的比较

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摘要

The goals of this work were (i) to compare two anion ion exchange resins (IRA958 Cl and IRA67) and a non-ionic resin (XAD16) in terms of phenolic compounds adsorption capacity from olive mill wastewater, and (ii) to compare the adsorption capacity of the best resin on columns of different length. The ion exchange resins proved less performant than non-ionic XAD16 in terms of resin utilization efficiency (20% versus 43%) and phenolic compounds/COD enrichment factor (1.0 versus 2.5). The addition of volatile fatty acids did not hinder phenolic compounds adsorption on either resin, suggesting a non-competitive adsorption mechanism. A pH increase from 4.9 to 7.2 did not affect the result of this comparison. For the best performing resin (XAD16), an increase in column length from 0.5 to 1.8 m determined an increase in resin utilization efficiency (from 12% to 43%), resin productivity (from 3.4 to 7.6 g sorbed phenolics/kg resin) and phenolics/COD enrichment factor (from 1.2 to 2.5). An axial dispersion model with non-equilibrium adsorption accurately interpreted the phenolic compounds and COD experimental curves.
机译:这项工作的目的是(i)比较两种阴离子交换树脂(IRA958 Cl和IRA67)和非离子树脂(XAD16)在橄榄磨坊废水中对酚类化合物的吸附能力,以及(ii)比较最佳树脂在不同长度的色谱柱上的吸附能力。就树脂利用效率(20%对43%)和酚类化合物/ COD富集系数(1.0对2.5)而言,离子交换树脂的性能比非离子XAD16差。挥发性脂肪酸的添加不会阻碍酚类化合物在两种树脂上的吸附,这表明存在非竞争性吸附机理。 pH从4.9增加到7.2不会影响此比较的结果。对于性能最好的树脂(XAD16),色谱柱长度从0.5增加到1.8 m决定了树脂利用效率(从12%增加到43%),树脂生产率(从每公斤树脂3.4克吸附酚到3.4克)和酚/ COD富集系数(从1.2到2.5)。具有非平衡吸附的轴向分散模型可准确解释酚类化合物和COD实验曲线。

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