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Kinetics, isotherm, thermodynamic, and adsorption mechanism studies of La(OH)3-modified exfoliated vermiculites as highly efficient phosphate adsorbents

机译:La(OH)3修饰的ver石作为高效磷酸盐吸附剂的动力学,等温线,热力学和吸附机理研究

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摘要

La(OH)3-modified exfoliated vermiculites were fabricated, characterized, and investigated for phosphate removal in batch tests for the first time. The BET surface area of the La5EV adsorbent, which was synthesized in the solution consisting of 5.00 mmol/g La/exfoliated vermiculite (EV), was significantly increased, accompanied with a larger pore diameter and greater total pore volume, as compared with the unmodified EV. The phosphate adsorption capacity of La5EV was approximately one order of magnitude higher than that of EV. Effects of initial phosphate concentration, contact time, temperature, pH, and co-existing ions on the adsorption capacity of La5EV were investigated in detail. The experimental equilibrium data were fitted better by using the Langmuir model (maximum adsorption capacity of 79.6 mg P/g) than the Dubinin–Radushkevich or the Freundlich model, suggesting that the adsorption feature be monolayer. Meanwhile, the phosphate adsorption kinetics could be well described by the pseudo-second-order model, and the adsorption process might be controlled by boundary layer (film) diffusion. ΔG°, ΔH° and ΔS° were also determined, in which it was found that the phosphate adsorption onto La5EV was spontaneous and exothermic in nature. The phosphate adsorption of La5EV was pH-dependent; that it exhibited a high adsorption capacity in the pH range of 3.0–7.0. The presence of 0.1 M CO 2/3 caused a reduction in phosphate adsorption capacity by 54.3%. On the other side, the addition of F−, Cl−, NO-3, and SO 2/4 had neglectable effects on its phosphate removal capacities. In the synthetic secondary treated wastewater with a low phosphate concentration of 2 mg P/L, 97.9% of its final adsorption capacity reached in the first 10 min and the phosphate concentration dramatically decreased below 50 μg P/L. The spent La5EV could be regenerated and reused in phosphate adsorption; that could remove more than 70% phosphate in the 3rd adsorption–desorption cycle.
机译:首次进行了La(OH)3改性的片状ver石的制备,表征和磷酸盐去除的研究。与未经改性的La5EV吸附剂在5.00 mmol / g La /片状ver石(EV)组成的溶液中合成的BET表面积显着增加,同时具有较大的孔径和较大的总孔体积EV。 La5EV的磷酸盐吸附能力比EV高约1个数量级。详细研究了初始磷酸盐浓度,接触时间,温度,pH和共存离子对La5EV吸附容量的影响。使用Langmuir模型(最大吸附容量为79.6 mg P / g)比Dubinin-Radushkevich或Freundlich模型拟合得更好,表明吸附特征是单层的。同时,磷的吸附动力学可以用拟二阶模型很好地描述,吸附过程可以由边界层(膜)扩散控制。还确定了ΔG°,ΔH°和ΔS°,其中发现磷酸盐在La5EV上的吸附是自然的并且是放热的。 La5EV的磷酸盐吸附取决于pH。它在3.0-7.0的pH范围内显示出高吸附能力。 0.1 M CO 2/3的存在导致磷酸盐吸附能力降低54.3%。另一方面,添加F-,Cl-,NO-3和SO 2/4对其除磷能力的影响可忽略不计。在磷酸盐浓度为2 mg P / L的合成二级处理废水中,其最终吸附容量的97.9%在最初的10分钟内达到,并且磷酸盐浓度显着降低到50μgP / L以下。用过的La5EV可以再生并重新用于磷酸盐吸附;在第三个吸附-解吸循环中,可以去除70%以上的磷酸盐。

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