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Preparation mechanism of spherical amorphous ZrO(OH)_2/AlOOH hybrid composite beads for adsorption removal of sulfate radical from water

机译:球形非晶态ZrO(OH)_2 / AlOOH杂化复合微珠的制备及吸附机理

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摘要

To circumvent the liquid-solid separation and dispersion of the powdered adsorbent during adsorption-desorption circulation, using a drop-oil sol-gel method, the spherical ZrO(OH)(2)/AlOOH hybrid composite beads were prepared as an adsorbent for sulfate adsorption removal from water. The preparation mechanism was proposed and discussed in term of the characterization results showing that the as-prepared beads is an amorphous mesoporous material constructed from nanoflakes composed of rod-like nanopartides, and possesses a good sphericity, a relatively high specific surface area (195.56 m(2)/g) and adequate mechanic strength (Zr/Al(0.2)-30-3.5, 32.1 N). The adsorption tests indicated that the saturated adsorption capacity increases with sulfate concentration and decreases with prolongation of adsorbent drying time, owing to the reduction of water content, the maximum adsorption capacity can reach 205 mg/g (Zr/Al(0.2)-30-2). This work has a profound significance for the further research and industrial application of spherical adsorbent related to hydrate zirconia in fixed adsorption bed. (C) 2019 Elsevier B.V. All rights reserved.
机译:为了避免吸附-解吸循环过程中粉末状吸附剂的液固分离和分散,采用滴油溶胶-凝胶法制备了球形ZrO(OH)(2)/ AlOOH杂化复合珠粒作为硫酸盐吸附剂。从水中去除吸附。根据表征结果提出并讨论了制备机理,结果表明所制备的微珠是由棒状纳米颗粒组成的纳米薄片构成的无定形介孔材料,具有良好的球形度,较高的比表面积(195.56 m)。 (2)/ g)和足够的机械强度(Zr / Al(0.2)-30-3.5,32.1 N)。吸附试验表明,饱和吸附量随硫酸盐浓度的增加而增加,随着吸附剂干燥时间的延长而降低,由于含水量的减少,最大吸附量可达205 mg / g(Zr / Al(0.2)-30- 2)。这项工作对于在固定吸附床上进一步研究与水合氧化锆有关的球形吸附剂具有深远的意义。 (C)2019 Elsevier B.V.保留所有权利。

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