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Granulation of Fe-Al-Ce nano-adsorbent for fluoride removal from drinking water by spray coating on sand in a fluidized bed

机译:通过在流化床中的沙子上喷涂来制粒Fe-Al-Ce纳米吸附剂以去除饮用水中的氟化物

摘要

A technology for the granulation of Fe-Al-Ce nano-adsorbent (Fe-Al-Ce) in a fluidized bed was developed. The coating reagent, a mixture of Fe-Al-Ce and a polymer latex, was sprayed onto sand in a fluidized bed. The granule morphology, coating layer thickness, granule stability in water and adsorption capacity for fluoride was investigated by analyzing samples for different coating time. The coating amount was from 3% to 36%. With increasing coating amount. granule stability decreased and adsorption capacity increased. FTIR analysis showed that the latex can react with active hydroxyl on the Fe-Al-Ce adsorbent, which led to a decrease of the adsorption capacity. Coated granules with a coating amount of 27.5% had a fluoride adsorption capacity of 2.22 mg/g (coated granules) at pH 7 and initial fluoride concentration of 0.001 M. A column test showed that 300 bed volumes can be treated with the effluent under 1.0 mg/L at an initial fluoride concentration of 5.5 mg/L, space velocity of 5 h(-1) and pH of 5.8. The coating granulation of the Fe-Al-Ce adsorbent can produce granules that can be used in a packed bed for the removal of fluoride from drinking water. (C) 2009 Elsevier B.V. All rights reserved.
机译:开发了一种在流化床中Fe-Al-Ce纳米吸附剂(Fe-Al-Ce)造粒的技术。将涂覆剂,Fe-Al-Ce和聚合物胶乳的混合物喷涂到流化床中的沙子上。通过分析不同涂覆时间的样品,研究了颗粒形态,包衣层厚度,颗粒在水中的稳定性和对氟的吸附能力。涂布量为3%至36%。随着涂层量的增加。颗粒稳定性下降,吸附能力增强。 FTIR分析表明,胶乳可以与Fe-Al-Ce吸附剂上的活性羟基反应,导致吸附能力下降。包衣量为27.5%的包衣颗粒在pH值为7时的氟化物吸附容量为2.22 mg / g(包衣颗粒),初始氟化物浓度为0.001M。柱测试表明,在1.0以下的废水中可处理300床体积初始氟化物浓度为5.5 mg / L,空速为5 h(-1),pH为5.8时的mg / L。 Fe-Al-Ce吸附剂的包衣造粒可生产出可用于填充床中的颗粒,用于去除饮用水中的氟化物。 (C)2009 Elsevier B.V.保留所有权利。

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