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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Adsorption of a non-steroidal anti-inflammatory drug onto MgAl/LDH-activated carbon composite - Experimental investigation and statistical physics modeling
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Adsorption of a non-steroidal anti-inflammatory drug onto MgAl/LDH-activated carbon composite - Experimental investigation and statistical physics modeling

机译:将非甾体抗炎药吸附到MGAL / LDH活性炭复合材料上 - 实验研究和统计物理建模

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A Layered Double Hydroxides (LDH) with Mg and Al composite (MgAl/LDH-biochar) was synthesised by the coprecipitation method, using bovine bone activated carbon as support structure for the LDH particles. The adsorbent was applied for diclofenac sodium (DS) removal from synthetic water. Batch experiments provided a DS removal of almost 80 % under optimized conditions. The performances of the MgAl/LDH-biochar composite (i.e. adsorption capacity as much as 5.96 mg/g) result significantly better when compared to the raw biochar (2.35 mg/g) at first 15 min. Despites the equilibrium data provided good adjustments for all tested models, Redlich-Peterson model showed the highest values of R-2 and lower values of average relative error (ARE) and Akaike's information criterion (AIC). The kinetic data of DS adsorption was best represented by the pseudo-second order model. The regenerability of MgAl/LDH-biochar was also evaluated through six adsorption/desorption cycles using either methanol or sodium chloride (0.5 mol/L) as desorbing agents, showing that the material can be reused until the third cycle maintaining a good adsorption capacity. The thermodynamic studies suggested that the adsorption process was spontaneous and exothermic, since the adsorption capacity decreased when the temperature increased. Finally, for a deeper insight in the DS adsorption mechanism, monolayer model formulated via statistical physics was adopted to describe the adsorption geometry of this relvant water pollutant and also to further characterize the interactions between DS and the tested adsorbent.
机译:通过CopRecipition方法合成了用Mg和Al复合物(MgAl / Ldh-Biochar)的层状双氢氧化物(LDH),使用牛骨活性炭作为LDH颗粒的支撑结构。吸附剂用于从合成水中除去双氯芬太钠(DS)。批量实验在优化条件下提供了近80%的DS去除。与原始生物炭(2.35mg / g)在前15分钟的比较时,MGAL / LDH-BioChOS复合物(即5.96mg / g的吸附容量高达5.96mg / g)的性能显着更好。尽管均衡数据为所有测试模型提供了良好的调整,但雷利希彼得松模型显示了R-2的最高值,并且较低的平均相对误差值(是)和Akaike的信息标准(AIC)。 DS吸附的动力学数据是由伪二次阶模型表示的最佳代表。使用甲醇或氯化钠(0.5mol / L)作为解吸剂的六种吸附/解吸循环也评价MgAl / LDH-BiOch的再生性,表明可以重复使用该材料直至保持良好的吸附能力。热力学研究表明,吸附过程是自发性和放热的,因为当温度增加时吸附容量降低。最后,对于DS吸附机制的更深入的洞察力,采用通过统计物理制定的单层模型来描述该雷维坦水污染物的吸附几何形状,还可以进一步表征DS和测试吸附剂之间的相互作用。

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