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Effect of dissolved organic matter on nitrate-nitrogen removal by anion exchange resin and kinetics studies

机译:溶解有机物对阴离子交换树脂去除硝酸盐氮的影响及动力学研究

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摘要

The effects of dissolved organic matter (DOM) on the removal of nitrate-nitrogen from the model contaminated water have been investigated utilizing the strong base anion exchange resins. With the increase of gallic acid concentration from 0 to 400 mg/L, the adsorption amount of nitrate-nitrogen on the commercial resins, including D201, Purolite A 300 (A300) and Purolite A 520E (A520E), would significantly decrease. However, the presence of tannin acid has little impact on nitrate-nitrogen adsorption on them. Compared to D201 and A300 resins, A520E resin exhibited more preferable adsorption ability toward nitrate-nitrogen in the presence of competing organic molecules, such as gallic acid and tannin acid at greater levels in aqueous solution. Attractively, the equilibrium data showed that the adsorption isotherm of nitrate-nitrogen on A520E resin was in good agreement with Langmuir and Freundlich equations. The rate parameters for the intra particle diffusion have been estimated for the different initial concentrations. In batch adsorption processes, nitrate-nitrogen diffuse in porous adsorbent and rate process usually depends on t~(1/2) rather than the contact time. The pseudo first- and the second-order kinetic models fit better for nitrate-nitrogen adsorption onto A520E resin. The observations reported herein illustrated that A520E resin will be an excellent adsorbent for enhanced removal of nitrate-nitrogen from contaminated groundwater.
机译:使用强碱阴离子交换树脂,已经研究了溶解有机物(DOM)对从模型污染水中去除硝酸盐-氮的影响。随着没食子酸浓度从0增加到400 mg / L,硝酸盐氮在商用树脂(包括D201,Purilite A 300(A300)和Purolite A 520E(A520E))上的吸附量将大大降低。但是,单宁酸的存在对硝酸盐氮的吸附几乎没有影响。与D201和A300树脂相比,A520E树脂在水溶液中含量较高的竞争有机分子(例如没食子酸和丹宁酸)存在下,对硝酸盐氮的吸附能力更佳。有吸引力的是,平衡数据表明,硝酸盐氮在A520E树脂上的吸附等温线与Langmuir和Freundlich方程非常吻合。对于不同的初始浓度,已经估计了粒子内扩散的速率参数。在间歇式吸附过程中,硝酸盐氮在多孔吸附剂中的扩散和速率过程通常取决于t〜(1/2),而不是接触时间。伪一阶和二阶动力学模型更适合硝酸盐-氮吸附到A520E树脂上。本文报道的观察结果表明,A520E树脂将是出色的吸附剂​​,可增强从受污染的地下水中去除硝酸盐-氮的能力。

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