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Adsorption of fluoride from water by surface-functionalized polyurethane foam.

机译:表面官能化聚氨酯泡沫塑料从水中吸附氟化物。

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Surface-functionalized polyurethane foam (SPUF) showed an exceptionally high adsorption potential for defluoridation of drinking water. Kinetic experiments of fluoride adsorption on SPUF demonstrated quick adsorption in first 60 min and then achieved maximum adsorption (7.8 mg g~1). The adsorption isotherm was described using Bradley equation. The adsorption capacity of SPUF was significantly influenced by the pH of the solution. The highest adsorption capacity was attained at pH 6.7 and no drastic reduction noticed in the adsorption capacity of SPUF at normal pH range (5.8-8.2). The fluoride adsorption capacity of SPUF was compared with other adsorbents like activated carbon, soil, alumina and carbon nanotubes. The added advantage of SPUF adsorbent is, it can be easily recharged by altering the pH of the solution using NaOH or Ca(OH). The high adsorption capacity and easy-to-use nature of SPUF in batch mode and continuous system makes the new adsorbent a promising material for defluoridation of drinking water.
机译:表面官能化聚氨酯泡沫(SPUF)对饮用水的除氟表现出极高的吸附潜力。氟化物在SPUF上的吸附动力学实验表明,在最初的60分钟内快速吸附,然后达到最大吸附量(7.8 mg g〜1)。用Bradley方程描述吸附等温线。 SPUF的吸附能力受溶液pH值的显着影响。在pH 6.7时可获得最高的吸附容量,并且在正常pH范围(5.8-8.2)时,SPUF的吸附容量没有明显降低。将SPUF的氟吸附能力与其他吸附剂(如活性炭,土壤,氧化铝和碳纳米管)进行了比较。 SPUF吸附剂的另一个优点是,通过使用NaOH或Ca(OH)改变溶液的pH值,可以很容易地对其进行补给。 SPUF的高吸附容量和易于使用的特性(在间歇模式和连续系统中)使这种新型吸附剂成为饮用水除氟的有前途的材料。

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