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Removal of fluoride from aqueous solution by adsorption on lanthanum modified attapulgite

机译:通过吸附镧改性亚替汀矿床从水溶液中除去氟化物

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Fluoride pollution in natural water may create severe threats for human health. In this study, lanthanum modified attapulgite (La-ATP) was synthesized and used as a novel adsorbent for removal of fluoride in aqueous solution. Characterized results showed that the mass content of Lanthanum oxide was 3.30%. La-ATP exhibited high adsorption affinity for aqueous fluoride and the maximum adsorption amounts were 16.92, 22.03 and 25.91mg/g at 15, 25 and 35°C, respectively. Adsorption kinetic followed pseudo-second kinetics model and adsorption rates decreased with increasing initial concentration of fluoride. The amount adsorbed of fluoride onto La-ATP decreased generally with increasing solution pH. The presence of coexisted anions in water decreased the adsorption amount of fluoride by competitive adsorption. Fluoride loaded La-ATP can be easily desorbed in alkaline solution and the regenerated adsorbent still possessed high adsorption capacity for aqueous fluoride. The results implied that La-ATP may be an efficient adsorbent for the removal of aqueous fluoride.
机译:天然水中的氟化物污染可能会对人类健康产生严重的威胁。在该研究中,合成了镧改性的亚己酮(La-ATP)并用作用于除去水溶液中氟化物的新型吸附剂。表征结果表明,氧化镧的质量含量为3.30%。 La-ATP为含氟化物的高吸附亲和力,分别为15,25和35℃的最大吸附量为16.92,22.03和25.91mg / g。吸附动力学跟随伪第二动力学模型和吸附率随着氟化物的初始浓度的增加而降低。吸附到La-ATP上的氟化物的量通常随着溶液pH的增加而降低。通过竞争性吸附,水中共存阴离子的存在降低了氟化物的吸附量。氟化物负载La-ATP可以在碱性溶液中容易地解吸,再生吸附剂仍然具有含氟化物水溶液的高吸附能力。结果暗示La-ATP可以是用于除去含氟化物水溶液的有效吸附剂。

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