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Solvent Impregnated Resins For The Removal Of Low Concentration Phenol From Water

机译:用于从水中去除低浓度苯酚的溶剂浸渍树脂

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The focus of this investigation is the development of a solvent impregnated resin for phenol removal from dilute aqueous solutions. Using a solvent impregnated resin (SIR) eliminates the problem of emulsification encountered in liquid-liquid extraction. Impregnated MPP particles and impregnated XAD16 particles are successfully used for phenol extraction. Impregnated MPP particles are preferred, as impregnated XAD16 particles show less mechanical strength and are more expensive. Impregnated MPP particles perform better compared to other synthetic adsorbents and basic ion exchangers. The maximum phenol capacity of impregnated MPP particles with 0.99 mol Cyanex 923 kg~(-1) SIR is 4.1 mol kg~(-1) SIR (386 mg g~(-1) SIR) and of MPP particles containing 1.47 mol Cyanex 923 kg~(-1) SIR it is 5.08 mol kg~(-1) SIR (478 mg g~(-1) SIR). The regenerability of impregnated MPP particles is easy and complete, and the particles are stable during several cycles. The equilibrium constants for the extraction of phenol are determined as K_(chem)= 37 L mol~(-1) and K_(phys) = 18 (mol L~(-1)) (mol L~(-1))~(-1). With these values the SIR isotherms can be satisfactorily described. The results indicate that SIR technology is a promising alternative for the conventional phenol removal technologies at low phenol concentration levels.
机译:该研究的重点是开发用于从稀水溶液中去除苯酚的溶剂浸渍树脂。使用溶剂浸渍树脂(SIR)消除了液-液萃取中遇到的乳化问题。浸渍的MPP颗粒和浸渍的XAD16颗粒已成功用于苯酚提取。浸渍的MPP颗粒是优选的,因为浸渍的XAD16颗粒显示出较低的机械强度并且更昂贵。与其他合成吸附剂和碱性离子交换剂相比,浸渍的MPP颗粒的性能更好。含0.99 mol Cyanex 923 kg〜(-1)SIR的浸渍MPP颗粒的最大酚容量为4.1 mol kg〜(-1)SIR(386 mg g〜(-1)SIR)和含1.47 mol Cyanex 923的MPP颗粒的最大苯酚容量。 kg〜(-1)SIR为5.08 mol kg〜(-1)SIR(478 mg g〜(-1)SIR)。浸渍的MPP颗粒的可再生性容易且完全,并且在多个循环中颗粒稳定。确定苯酚提取的平衡常数为K_(chem)= 37 L mol〜(-1)和K_(phys)= 18(mol L〜(-1))(mol L〜(-1))〜 (-1)。利用这些值,可以令人满意地描述SIR等温线。结果表明,SIR技术是低苯酚浓度水平下常规苯酚去除技术的有希望的替代方法。

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