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Understanding Competitive Adsorption of NTMP and Silica on Ferric Hydroxide

机译:了解NTMP和二氧化硅在氢氧化铁上的竞争性吸附

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Ferric hydroxide adsorbents are commonly used to remove phosphonate antiscalants from membrane concentrate solutions. This research investigated competitive adsorption of nitrilotris(methylenephosphonic acid) (NTMP) and silica on ferric hydroxide. Equilibrium adsorption isotherms were measured and column breakthrough and regeneration experiments were performed for an NTMP adsorbate in simulated membrane concentrate solutions with and without dissolved orthosilicic acid. Quantum chemistry simulations using density functional theory (DFT) were used to evaluate the thermodynamic favorability of possible adsorption mechanisms for NTMP and silica. Column breakthrough experiments showed that 86 mg/L of dissolved silica decreased adsorption of NTMP by 36% after 3,685 bed volumes. DFT modeling indicated that NTMP and silica adsorption on ferric hydroxide may occur through both mono-and bidentate complex formation. NTMP adsorption through a bidentate binuclear complex was 12 kcal/mol more energetically favorable than monodentate complexation. Dimerization reactions between adsorbed silica and dissolved silica greatly increased silica adsorption for dissolved silica concentrations greater than 60 mg/L. DFT modeling and experimental results also indicated that dissolved NTMP may react with adsorbed silica through condensation reactions. Although adsorbed silica decreased the total uptake of NTMP, it increased the efficiency of regeneration by 0.10 M NaOH solutions. This is consistent with adsorbed silica decreasing formation of bidentate binuclear NTMP complexes.
机译:氢氧化铁吸附剂通常用于从膜浓缩液中除去膦酸酯类防垢剂。这项研究调查了次氮基三(亚甲基膦酸)(NTMP)和二氧化硅在氢氧化铁上的竞争性吸附。测量了平衡吸附等温线,并在有和没有溶解原硅酸的模拟膜浓缩液中对NTMP吸附物进行了色谱柱穿透和再生实验。使用密度泛函理论(DFT)进行的量子化学模拟用于评估NTMP和二氧化硅可能的吸附机理的热力学适应性。色谱柱突破实验表明,在3,685床体积后,86 mg / L的溶解二氧化硅使NTMP的吸附降低了36%。 DFT模型表明,NTMP和二氧化硅在氢氧化铁上的吸附可能通过单和双齿络合物的形成而发生。通过双齿双核络合物的NTMP吸附比单齿络合物在能量上有利于12 kcal / mol。当溶解的二氧化硅浓度大于60 mg / L时,吸附的二氧化硅和溶解的二氧化硅之间的二聚反应大大增加了二氧化硅的吸附。 DFT建模和实验结果还表明,溶解的NTMP可能通过缩合反应与吸附的二氧化硅反应。尽管吸附的二氧化硅降低了NTMP的总吸收量,但通过0.10 M NaOH溶液提高了再生效率。这与吸附的二氧化硅减少二齿双核NTMP复合物的形成相一致。

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