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Utilization of fly ash zeolite for boron removal from aqueous solution

机译:利用粉煤灰沸石去除水溶液中的硼

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A novel zeolite synthesized from fly ash was characterized and studied for the removal of boric acid from aqueous solution. The adsorption behavior of fly ash zeolite (FAZ) for boron was investigated using a batch system and the influence of pH, temperature, adsorption time, initial boron concentration and adsorbent dose on the removal of boron was studied. The results showed that the adsorption was dependent on the pH of the solution and was maximal at around pH 7. The removal of boron increased while the adsorbent dose increased and the temperature decreased. The adsorption equilibrium was achieved after 2 h. The experimental data were fitted better using the Freundlich isotherm than the Langmuir, and Dubinin-Radushkevich models. The boron adsorption capacity and percentage removal from the solution containing 50 mgB L-1 amounted to 2.3 mg g(-1) and 93%, respectively, while pH 7, adsorption time = 0.5 h, and adsorbent dose = 20 g L-1. The thermodynamic calculations indicated the spontaneous and exothermic nature of the adsorption process. The kinetic studies revealed the physisorption as a dominating mechanism of boron removal using FAZ. The pseudo-second-order model adequately described the boron adsorption on FAZ.
机译:对粉煤灰合成的新型沸石进行了表征,并进行了从水溶液中去除硼酸的研究。采用间歇法研究了粉煤灰沸石对硼的吸附行为,研究了pH,温度,吸附时间,初始硼浓度和吸附剂量对硼去除的影响。结果表明,吸附取决于溶液的pH值,并且在pH约为7时最大。吸附的硼增加,而吸附剂的剂量增加,温度降低。 2小时后达到吸附平衡。使用Freundlich等温线比Langmuir和Dubinin-Radushkevich模型拟合得更好。在pH为7的条件下,硼的吸附容量和从含50 mgB L-1的溶液中的去除百分率分别为2.3 mg g(-1)和93%,吸附时间= 0.5 h,吸附剂量= 20 g L-1 。热力学计算表明了吸附过程的自发性和放热性。动力学研究表明,物理吸附是使用FAZ脱硼的主要机理。伪二级模型充分描述了硼在FAZ上的吸附。

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